WO2003094390A1 - Station mobile - Google Patents
Station mobile Download PDFInfo
- Publication number
- WO2003094390A1 WO2003094390A1 PCT/JP2002/004338 JP0204338W WO03094390A1 WO 2003094390 A1 WO2003094390 A1 WO 2003094390A1 JP 0204338 W JP0204338 W JP 0204338W WO 03094390 A1 WO03094390 A1 WO 03094390A1
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- WIPO (PCT)
- Prior art keywords
- sector
- data
- mobile station
- channel
- dedicated physical
- Prior art date
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/04—Transmission power control [TPC]
- H04W52/38—TPC being performed in particular situations
- H04W52/40—TPC being performed in particular situations during macro-diversity or soft handoff
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/022—Site diversity; Macro-diversity
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/0491—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas using two or more sectors, i.e. sector diversity
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
- H04W36/0069—Transmission or use of information for re-establishing the radio link in case of dual connectivity, e.g. decoupled uplink/downlink
- H04W36/00692—Transmission or use of information for re-establishing the radio link in case of dual connectivity, e.g. decoupled uplink/downlink using simultaneous multiple data streams, e.g. cooperative multipoint [CoMP], carrier aggregation [CA] or multiple input multiple output [MIMO]
Definitions
- the present invention relates to a mobile station used in mobile radio communication, and more particularly, to a mobile station to which site selection diversity transmission power control is applied.
- one mobile station receives the same data from multiple sectors at the same time, and the mobile station A site selection diversity in which a specific section is selected and only the selected section transmits data to the mobile station using the dedicated physical data channel DPDCH (Dedicated Physical Data Channel).
- DPDCH Dedicated Physical Data Channel
- Transmission power control SSDT Site Selection Diversity Transfer Protocol
- a sector is a base station that has a directional antenna and covers a part of the 360-degree area. Pointing to.
- Site selection diversity transmission power control As a conventional sector selection method for performing SSDT, for example, 3GPP TS 25.214 ver 3.7.0 (3rd GENERATION PARTNERSHIP PROJECT, TECHNICAL S There is a secda selection method described in pecification Group Access Radio Network, 2000-1-6). PT / JP02 / 04338
- a mobile station that is in a diversity handover state selects a sector that is communicating via a sector from a radio network controller RNC (Radio Network Controller), which is the upper station of the sector.
- RNC Radio Network Controller
- the mobile station measures the reception level of the common pilot channel of each section in the received sector selection candidate table, and selects the sector having the highest reception level of the common pilot channel.
- the sector ID of the selected sector is reported using the uplink dedicated physical channel.
- the sector with the highest reception level is called Primary cell, and the sector that has not been notified as Primary cell by notifying the Primary cell ID to all the sectors with which the mobile station is communicating is No n — Pr ima ryce 1 Recognizes that this is 1 and stops data transmission on the dedicated physical data overnight channel. In this way, only the sector designated as Primaryce11 performs site selection diversity transmission power control for transmitting data to the mobile station using the dedicated physical data channel.
- the mobile station dynamically switches the Primary cell by notifying the Primary cell ID to the sector, and receives data in the dedicated physical data channel only from the Primaryce 11 to cover the sector.
- the interference power in the area is reduced.
- the radio network controller RNC sets the value of the site selection diversity transmission power control to 0. Determine n / 0ff and notify the mobile station.
- the mobile station notified of “0 n” of the site selection diversity transmission power control receives the signal on the common pilot channel. Measure the level, select Primaryce 11 and notify the Primary cell ID to all communicating sectors.
- the sector selected as Primary 1 can receive the data transmitted from the mobile station on the individual uplink physical channel with good quality. Even if it is notified that the sector is a rima rycell multiple times, it may not recognize that the corresponding sector is a primary cell.
- the mobile station always determines whether or not the received power of the common pilot channel is received without determining whether or not data is being transmitted from the sector selected as the Primary cell using the individual physical data channel. He continued to select the strongest base station as Prima marcell. Therefore, if the base station with the highest received power on the common pilot channel does not transmit data using the dedicated physical data channel, the mobile station cannot receive data on the dedicated physical data channel. was there.
- the conventional mobile station Since the conventional mobile station is configured as described above, there is a problem that data to be transmitted may accumulate in the radio network control station RNC, which is the upper station in the sector, and the buffer capacity may be exceeded. there were.
- the site selection diversity transmission power control aims at reducing the interference power received by the mobile station, the mobile station transmits individual physical data channels from the sector selected as the Primary cell. In some cases, the mobile station has to wait until the line condition is restored, which reduces the probability of receiving data from the mobile station.
- the present invention has been made to solve the above-described problems, and can reduce the delay of data to be transmitted on a network side, and can also receive data of a dedicated physical data channel of a mobile station. Improve probability The purpose is to obtain a mobile station that can be used. Disclosure of the invention
- a mobile station receives data from a plurality of sectors and selects a sector that is a candidate for site selection diversity transmission power control, and selects a plurality of sectors from among the sectors indicated in the received sector selection candidate table. Is selected.
- a mobile station selects a plurality of sectors when data of an individual physical data channel is not transmitted from the selected sector.
- a mobile station selects a plurality of sectors when there is no transmission of a dedicated physical data channel from a selected sector a predetermined number of times or more.
- a mobile station determines whether or not data of a common pilot channel is transmitted from a plurality of sectors, and when there is no sector transmitting data of the common pilot channel more than a predetermined number of times, This is to select multiple sectors.
- the probability of receiving data on the individual physical data channel of the mobile station can be improved over time, and even in an environment where site selection diversity transmission power control does not operate effectively, the This has the effect of reducing the number of retransmissions of the dedicated physical data overnight channel and preventing line disconnection of the dedicated physical data channel.
- a mobile station according to the present invention excludes a sector that does not transmit data of a common pilot channel from candidates for site selection diversity transmission power control.
- a mobile station excludes, from a candidate for site selection diversity transmission power control, a sector in which a common pilot channel has not been transmitted over a predetermined number of times or more.
- a mobile station receives data from a plurality of sectors and selects a candidate sector for site selection diversity transmission power control, and determines whether data is transmitted from the plurality of sectors. Then, sectors that have not been transmitted for more than a predetermined number of times are excluded from candidates for site selection diversity transmission power control.
- a mobile station determines whether or not transmission of a common pilot channel from a plurality of sectors is performed overnight.
- the mobile station according to the present invention determines whether or not to transmit an individual physical data channel from the selected sector, and selects a sector in which the individual physical data channel has not been transmitted more than a predetermined number of times. It is temporarily excluded from the candidates for diversity transmission power control.
- a mobile station receives data from a plurality of sectors and selects a sector that is a candidate for site selection diversity transmission power control.
- the sector is selected based on whether or not data transmission is performed on the individual physical data channel and the DTX on Z off information of the TFCI section indicating the transport channel configuration in the individual physical control channel.
- a mobile station measures reception power of a dedicated physical data channel and determines whether or not to transmit data of a dedicated physical data channel. This has the effect of reducing the stagnation of data to be transmitted on the network side and improving the reception probability of the mobile station.
- a mobile station measures reception power of a TFC I part of a dedicated physical control channel to determine whether or not a dedicated physical data channel is to be transmitted.
- a mobile station measures reception power of a pilot section of a dedicated physical control channel and determines whether or not data is transmitted over a dedicated physical data channel.
- a mobile station measures reception power of a pilot section of a boat-specific physical control channel and reception power of a TFC I section to determine whether or not to transmit data of an individual physical data channel.
- FIG. 1 is a block diagram showing a configuration of a mobile station according to Embodiments 1 to 6 of the present invention.
- FIG. 2 is a flowchart showing a processing flow of the mobile station according to the first embodiment of the present invention.
- FIG. 3 is a flowchart showing a flow of processing of a mobile station according to Embodiment 2 of the present invention.
- FIG. 4 is a flowchart showing a flow of processing of a mobile station according to Embodiment 3 of the present invention.
- FIG. 5 is a flowchart showing a flow of processing of a mobile station according to Embodiment 4 of the present invention.
- FIG. 6 is a flowchart showing a processing flow of a mobile station according to Embodiment 5 of the present invention. It is a roach.
- FIG. 5 is a flowchart showing the flow of processing of a mobile station according to Embodiment 6 of the present invention.
- FIG. 8 is a block diagram showing a configuration of a mobile station according to Embodiments 7 to 10 of the present invention.
- FIG. 9 is a flowchart showing a processing flow of the mobile station according to Embodiment 7 of the present invention.
- FIG. 10 is a diagram illustrating a method of selecting a sector in a mobile station candidate selection unit according to Embodiments 7 to 10 of the present invention.
- FIG. 11 is a flowchart showing a flow of processing of a mobile station according to Embodiment 8 of the present invention.
- FIG. 12 is a flowchart showing a flow of processing of a mobile station according to Embodiment 9 of the present invention.
- FIG. 13 is a flowchart showing a processing flow of the mobile station according to the tenth embodiment of the present invention.
- FIG. 1 is a block diagram showing a configuration of a mobile station according to Embodiment 1 of the present invention.
- 1 is an antenna unit for receiving data
- 2 is a digital signal receiving data for an analog signal.
- 3 is an AGC unit that adjusts the gain of the reception data converted to a digital signal
- 4 is the reception data from the A / D conversion unit 2 that uses a RAKE receiver. Demodulates multiple paths and multiple sectors, and decodes the demodulated data.
- reference numeral 5 denotes the received power of the individual physical data channel from each sector based on the data amplitude of the individual physical data channel from each sector demodulated by the demodulation unit 4 and the setting data of the AGC unit 3.
- a power measuring unit, 6 is a determining unit that determines whether or not each sector transmits individual physical data channel data based on the received power information measured by the received power measuring unit 5, and 7 is a determining unit 6.
- the candidate selection section that selects a sector for which site selection diversity transmission power control is to be performed as a candidate, 8 modulates the transmission time, and 8 of the sector selected by the candidate selection section 7.
- Sector I This is a modulation unit provided with a transmission information mapping unit (not shown) that maps D as transmission information in the slot.
- FIG. 2 is a flowchart showing a processing flow of the mobile station according to the first embodiment of the present invention.
- the mobile station performs the individual physical data channel decoding from some or all of the sectors indicated in the sector selection candidate table notified from the radio network controller RNC.
- the received power measurement unit 5 receives the data of the common physical channel and the received data, and the received power measurement unit 5
- the common power from each sector is Measure the received power of the pilot channel.
- step ST 12 determination section 6 compares the reception power of the individual physical data channel of each section measured by reception power measurement section 5 with a predetermined threshold. If the received power is equal to or higher than the predetermined threshold, it is determined that there is data of the individual physical data channel from the sector. If the received power is lower than the predetermined threshold, the data of the individual physical data channel from the sector is determined. By judging that there is no data, it is determined whether or not each sector transmits data of the individual physical data channel.
- step ST13 If it is determined in step ST13 that the dedicated physical data channel has been transmitted, the determination unit 6 sets a flag of the corresponding sector. On the other hand, when it is determined that there is no dedicated physical data channel transmission, the determination unit 6 does not set the flag.
- step ST 14 the candidate selection unit 7 determines that all the sectors or mobile stations designated by the radio network control station RNC have The presence / absence of the flag is determined for some of the selected sectors, and if no data of the dedicated physical data channel has been transmitted from any of the sectors, in step ST15, the candidate selection unit 7 Select the multiple sector selection number, which is the ID for requesting transmission of the data of the individual physical data channel, from the section of (1). These multiple sections are some or all of the sectors indicated in the section selection candidate table notified from the radio network controller RNC.
- step ST 14 if the data of the dedicated physical data channel is transmitted from any of a plurality of sections, in step ST 16, candidate selection section 7 sets in step ST 1 Select the sector ID of the sector with the highest received power of the common pilot channel measured in step 1 as a candidate
- the modulating unit 8 performs the setting of the sector of the sector selected by the candidate selecting unit 7 in accordance with the transmission frame format specified by the radio network control station RNC.
- the ID is mapped to a predetermined location in the slot, modulated over the transmission data, and transmitted to each sector.
- the presence / absence of transmission of the individual physical data channel from a plurality of sectors is determined, and the data of the individual physical data channel is transmitted from any of the sectors. Otherwise, by specifying a multi-sector selection number requesting the transmission of the dedicated physical data channel from multiple sectors, the data of the dedicated physical data channel can be immediately transmitted from another sector. Evenings, which can reduce the delay of data to be sent on the network side and improve the probability of receiving data on the individual physical data channel of the mobile station. Can be 'Embodiment 2.
- the block diagram showing the configuration of the mobile station according to the second embodiment of the present invention is the same as the configuration shown in FIG. 1 of the first embodiment.
- FIG. 3 is a flowchart showing a flow of processing of a mobile station according to Embodiment 2 of the present invention.
- the received power measurement unit 5 receives the data of the dedicated physical data channel, and based on the data amplitude of the dedicated physical data channel demodulated by the demodulation unit 4 and the setting data of the AGC unit 3, receives the data from each sector.
- the common pilot data from each sector is based on the data amplitude of the common pilot channel demodulated by the demodulation unit 4 and the data set by the AGC unit 3. Measure the received power of the mouth channel.
- step ST22 the determination unit 6 compares the reception power of the individual physical data channel measured by the reception power measurement unit 5 with a predetermined threshold, and if the reception power is equal to or higher than the predetermined threshold, the individual unit from the sector is determined. Judgment that there is data on the physical data channel, and if the received power of the dedicated physical data channel is less than the predetermined threshold, it is determined that there is no data on the dedicated physical data channel from that sector. Then, it is determined whether or not each sector transmits a dedicated physical data channel.
- the candidate selecting unit 7 sets the reception power of the common pilot channel measured in step S ⁇ 21. Is selected as the candidate.
- step S ⁇ 22 determines the internal count value in step S ⁇ 24 in step S ⁇ 24. Increment.
- step S ⁇ 25 the determination unit 6 determines whether the count value has reached a predetermined threshold value set in advance, and if the count value has reached the predetermined threshold value.
- step S ⁇ 26 the candidate selection unit 7 selects a plurality of sector selection numbers for requesting the transmission of the dedicated physical data channel from the plurality of sectors.
- step S # 25 If the value of the count has not reached the predetermined threshold value in step S # 25, the candidate selection unit 7 performs the processing in step S # 23.
- whether or not the dedicated physical data channel is transmitted is determined from the sector selected by the mobile station, and the dedicated physical data is not transmitted.
- data of individual physical data channels can be Data can be transmitted immediately from other sectors even if the data is not transmitted, the amount of data to be transmitted on the network side can be reduced, and the data of the individual physical data channel of the mobile station can be reduced. This has the effect of improving the reception probability of the message.
- the block diagram showing the configuration of the mobile station according to the third embodiment of the present invention is equivalent to the configuration shown in FIG. 1 of the first embodiment.
- the received power of the common common channel is compared with a predetermined threshold to determine whether or not to transmit data of the common common channel.
- Embodiment 3 addresses such a case, and the sector judges the data transmission of the common pilot channel in which the sector always transmits data at a constant transmission power. is there.
- FIG. 4 is a flowchart showing a flow of processing of a mobile station according to Embodiment 3 of the present invention.
- the mobile station transmits a common pilot channel from some or all of the sectors indicated in the sector selection candidate table notified from the radio network controller RNC.
- the received power measurement unit 5 receives the signal demodulated by the demodulation unit 4 04338
- step ST32 the judging unit 6 compares the received power of the common pilot channel measured by the received power measuring unit 5 with a predetermined threshold, and determines the data of the common pilot channel.
- step ST33 if the received power is less than the predetermined threshold and there is no transmission of the common pilot channel data, in step ST33, the determination unit 6 internally has a counter provided for each sector. Clear the evening value and exclude that sector from the candidates for site selection diversity transmit power control.
- step ST32 if the received power is equal to or higher than the predetermined threshold and if there is data transmission of the common pilot channel, in step ST34, the determination unit 6 is provided internally for each sector. Increment the value of the current count.
- step ST35 the judging unit 6 compares the count value with a predetermined threshold value, and if the count value is equal to or larger than the predetermined threshold value, in step ST36, the judging unit 6 places the sector in the site. Selection diversity transmission Power control candidate. If the count value is less than the predetermined threshold, nothing is done.
- step ST37 the candidate selection unit ⁇ determines whether there is a section that is a candidate for site selection diversity transmission power control. Is determined. If there are a plurality of sectors that are candidates for site selection diversity selection, in step ST38, the candidate selection unit 7 selects a sector having the highest received power of the common pilot channel from among them. I do.
- step ST37 if no sector is a site selection diversity selection candidate, in step ST39, the candidate selection unit 7 transmits data of the dedicated physical data channel from a plurality of sectors. Select the multiple sector selection number, which is the ID requesting communication.
- the data transmission of the individual physical data channel is performed from a plurality of sectors.
- a multi-sector selection number that requests transmission of data it is possible to reduce the amount of data to be transmitted on the network side and to reduce the number of individual physical data channels of mobile stations. The effect of improving the data reception probability can be obtained.
- a site selection diversity selects a candidate sector for transmission power control based on the reception power of the common pilot channel transmitted from each sector with the same power. Therefore, even in an environment where site selection diversity transmission power control does not operate effectively, it is possible to reduce the number of retransmissions of the individual physical data channel from the sector and prevent line disconnection of the individual physical data channel. The effect is obtained.
- reception power measuring section 5 Measures the received power of the common pilot channel from each sector based on the amplitude of the data of the common pilot channel from each sector and the setting data of the AGC unit 3.
- the judgment unit 6 measures the received power.
- the received power of the common gateway channel measured by the unit 5 is compared with a predetermined threshold value to determine whether or not the common gateway channel data is transmitted.
- a protection decision is made to exclude sectors with high level fluctuations that continue the number of receptions from selection candidates.
- the sector is always fixed. Judgment of data transmission over a common gateway channel that transmits data using communication power.
- FIG. 5 is a flowchart showing a processing flow of a mobile station according to Embodiment 4 of the present invention.
- the mobile station transmits the common pilot channel from some or all of the sectors indicated in the sector selection candidate table notified from the radio network controller RNC.
- the received power measurement unit 5 receives the signal overnight, and the received power measurement unit 5 receives the common pilot channel demodulated by the demodulation unit 4 and uses the common pilot channel from each sector based on the amplitude of the data and the setting data of the AGC unit 3. Measure the received power of the channel.
- step ST42 the determination unit 6 compares the reception power of the common pilot channel measured by the reception power measurement unit 5 with a predetermined threshold value, and determines whether or not the common pilot channel data is transmitted. If the received power is equal to or higher than the predetermined threshold and there is a transmission of the common pilot channel for a short period of time, in step ST43, the determination unit 6 determines the internal count corresponding to each sector. The value of evening 1 is incremented.
- step ST44 the judging unit 6 compares the incremented value of the count 1 with a predetermined threshold value, and if the value of the count 1 is equal to or more than the predetermined threshold value, in step ST45, the judgment unit 6 makes a judgment.
- Unit 6 sets the sector as a candidate for site selection diversity transmission power control. If the value of the count 1 is less than the predetermined threshold value in step ST44, the determination unit 6 does nothing.
- step ST42 if the received power is less than the predetermined threshold and there is no data transmission of the common pilot channel, in step ST46, the determination unit 6 Increment the value of counter 2 provided internally by.
- the judging unit 6 sets the incremented 38
- the value of the evening 2 is compared with a predetermined threshold value. If the value of the counter 2 is equal to or more than the predetermined threshold value, in step ST48, the determination unit 6 excludes the sector from the selection candidate section. If the value of the count 2 is less than the predetermined threshold value in step ST47, the determination unit 6 does nothing.
- step ST49 the candidate selection unit 7 determines whether or not there is a sector that is a candidate for site selection diversity transmission power control. Is determined. If there are a plurality of sectors that are candidates for the site selection diversity selection, in step ST50, the candidate selection unit 7 selects a sector having the highest received power of the common pilot channel from among them.
- step ST49 if there is no sector that is a candidate for site selection diversity selection, in step ST51, the candidate selection unit 7 transmits the individual physical data channel from a plurality of sections. Select the multiple sector selection number, which is the ID that requests data transmission.
- the fourth embodiment when there is no sector that can secure the predetermined reception power of the common pilot channel, transmission of the individual physical data channel from multiple By selecting a multi-sector selection number that requires data transmission, it is possible to reduce the amount of data to be transmitted on the network side and to improve the probability of receiving data on individual physical data channels of mobile stations. The effect that can be obtained is obtained.
- a site selection diversity selects a sector as a candidate for the transmission power control in the city, based on the reception power of the common pilot channel transmitted from each sector with the same power. Therefore, even in an environment where the site selection diversity transmission power control does not operate effectively, the number of retransmissions of the individual physical data channel from the sector can be reduced, and the individual physical data PT / JP02 / 04338
- a sector having a stable received power is determined. It is possible to select the sector with the highest received power from among them, reduce the number of data retransmissions due to unsuccessful transmission of data transmitted from the sector to the mobile station, and reduce the data to be transmitted on the network side. The effect is that the overnight stay can be reduced.
- the block diagram showing the configuration of the mobile station according to the fifth embodiment of the present invention is the same as FIG. 1 of the first embodiment, but in the fifth embodiment, received power measuring section 5 performs transmission from each sector.
- the received power of the common pilot channel from each sector is measured based on the amplitude of the data of the common pilot channel and the setting data of the AGC section 3.
- a protection decision is made to exclude the sections that have a lot of level fluctuations from the selection candidates. Next, the operation will be described.
- the mobile station uses multiple demodulators to receive from multiple sections.
- Sector candidates to be received are specified from the network side. Normally, a plurality of sectors transmit data using the same dedicated physical data channel, but when the site selection diversity transmission power control method is enabled, the dedicated physical data except for the sector selected by the mobile station is used. Stop transmission of the overnight channel.
- the mobile station notifies each sector of the sector number selected by the mobile station using the uplink. However, the sector number selected by the mobile station may not be transmitted to the sector normally.
- the section number for which the mobile station cannot recognize the selected sector number is determined by the uplink link status. Bad section It is determined to be evening and excluded from the selection candidates.
- FIG. 6 is a flowchart showing a flow of processing of a mobile station according to Embodiment 5 of the present invention.
- the mobile station transmits data of the common pilot channel from some or all of the sectors indicated in the sector selection candidate table notified from the radio network controller RNC.
- the received power measurement unit 5 receives the common pilot channel from each sector based on the amplitude of the common pilot channel data demodulated by the demodulation unit 4 and the setting data in the AGC unit 3. Measure the received power of
- step ST62 the determination section 6 compares the reception power of the common pilot channel measured by the reception power measurement section 5 with a predetermined threshold to determine whether or not to transmit data of the common pilot channel. On the other hand, if the received power is equal to or higher than the predetermined threshold, in step ST63, the determination unit 6 increments the value of the counter 1 provided internally for each sector.
- step ST64 the judging unit 6 compares the incremented value of the count 1 with the predetermined threshold, and if the value of the count 1 is equal to or more than the predetermined threshold, in step ST65, the judgment unit 6 6 makes the sector a candidate for site selection diversity transmission power control. If the value of the count 1 is less than the predetermined threshold value in step ST64, the determination unit 6 does nothing.
- step ST62 if the received power is less than the predetermined threshold value, in step ST66, the decision unit 6 increments the value of the power supply 2 internally provided for each sector. To install.
- step ST67 the judging unit 6 compares the incremented value of the counter 2 with a predetermined threshold value. If the value of the counter 2 is equal to or larger than the predetermined threshold value, the judging unit 6 judges in step ST68. Excludes that sector from the selection candidate sectors. If the value of the count 2 is less than the predetermined threshold in step ST67, the determination unit 6 does nothing.
- the processing in steps ST61 to ST68 is performed for each sector, and in step ST69, the candidate selection unit ⁇ ⁇ selects the section having the highest received power of the common pilot channel.
- the received power is stabilized by performing a protection decision that excludes, from the selection candidates, a section with a large level fluctuation in which the received power is weak for a predetermined number of receptions. It is possible to select the sector with the highest received power from the selected sectors, reduce the number of data retransmissions due to non-delivery of data transmitted from the sector to the mobile station, and reduce transmission on the network side. This has the effect of reducing the stagnation of data to be processed.
- the block diagram showing the configuration of the mobile station according to the sixth embodiment of the present invention is the same as that of FIG. 1 of the first embodiment, however, in the sixth embodiment,
- the measured reception power of the dedicated physical data channel is compared with a predetermined threshold to determine whether or not the data of the dedicated physical data channel is transmitted, and the reception power of the dedicated physical data channel is weak for a predetermined number of receptions.
- a protection decision is made to temporarily exclude sexually-changing sections from selection candidates.
- the sixth embodiment uses the uplink link line for the sector that cannot recognize the sector number selected by the mobile station.
- the sector is determined to be in a bad situation and temporarily excluded from the selection candidates.
- FIG. 7 is a flowchart showing a flow of processing of a mobile station according to Embodiment 6 of the present invention.
- Step s In T71, wireless networking.
- the mobile station receives the data of the dedicated physical data channel from each sector of the sector ID that has been selected and notified by the mobile station among the sectors indicated in the sector selection candidate template notified from the RNC.
- the reception power measurement unit 5 measures the reception power of the individual physical data channel from each sector based on the data amplitude of the individual physical data channel demodulated by the demodulation unit 4 and the setting data of the AGC unit 3.
- the received power of the common pilot channel from each sector is measured based on the data amplitude of the common pilot channel demodulated by the demodulation unit 4 and the data setting of the AGC unit 3. I do.
- step ST72 the determination unit 6 compares the reception power of the dedicated physical data channel measured by the reception power measurement unit 5 with a predetermined threshold. If the received power of the individual physical data channel is less than a predetermined threshold, the data of the individual physical data channel from that sector is determined. By determining that there is no data, it is determined whether or not data of the individual physical data channel is transmitted from each sector.
- step ST72 when the data of the individual physical data channel is not transmitted from each sector, in step ST73, the determination unit 6 reads the value of the counter provided internally for each sector. Increment and count the number of unreceived messages. In addition, when the data of the individual physical data channel is transmitted from each sector, in step ST74, the determination unit 6 clears the count value provided internally for each sector. .
- step ST75 the determination unit 6 determines whether the count value has reached a predetermined threshold value. If the count value has reached the predetermined threshold value, the determination unit 6 determines whether the count value has reached the predetermined threshold value.
- determination section 6 removes the sector from the selection candidate table of the mobile station for T [sec]. If the power value is below the threshold, nothing is done.
- the candidate selection unit ⁇ ⁇ selects the sector having the highest received power of the common pilot channel from the candidates for each sector notified from the determination unit 6.
- each time a mobile station selects a sector it is determined whether or not data of an individual physical data channel is transmitted from the sector.
- the sector is temporarily excluded from the sector selection candidates, and the common physical channel is selected from among the sectors with stable received power of the dedicated physical data channel. It is possible to select the sector that has the highest received power of the network, reduce the number of data retransmissions from the sector to the mobile station due to non-delivery of data, and the data to be transmitted on the network side. This has the effect of reducing the amount of stagnation.
- FIG. 8 is a block diagram showing the configuration of a mobile station according to Embodiment 7 of the present invention.
- reference numeral 9 denotes a reception data decoded by demodulation section 4 and a decoding result as a decoding result.
- a decoding section that outputs data information. 10 is a site selection diversity transmission power control SSD notified from the radio network control station RNC based on the reception data information from the decoding section 9.
- determination section 6 determines whether or not to transmit the data of the individual physical data channel based on the reception power of the individual physical data channel.
- the candidate selection unit 7 determines whether or not to transmit the dedicated physical data channel as a result of the determination by the determination unit 6 and the site selection diversity transmission power control SSDT 0 nZ off information from the control unit 1 Then, based on the DTX on / off information of the TFCI indicating the transport channel configuration, a sector that is a candidate for site selection diversity transmission power control is selected.
- the TFCI section is an indicator bit transmitted on the dedicated physical control channel. If data is not transmitted on the dedicated physical data channel, the TFCI section is turned on D TX and the TFCI section is not transmitted. . Next, the operation will be described.
- the mobile station uses multiple demodulators to receive from multiple sections. Sector candidates to be received are specified from the network side. Normally, multiple sectors transmit data using the same dedicated physical data channel, but when the site selection diversity transmission power control method is enabled, individual sectors other than the sector selected by the mobile station are used. Stop sending data on the physical data overnight channel. The mobile station notifies each sector of the sector number selected by the mobile station using the uplink. However, the sector number selected by the mobile station may not be properly transmitted to the sector.
- the determination unit 6 determines whether or not data of the dedicated physical data channel is transmitted, and It notifies the candidate selection unit 7 not to reselect sectors that do not transmit data using the physical data channel.
- FIG. 9 is a flowchart showing the flow of processing of a mobile station according to Embodiment 7 of the present invention.
- the mobile station selects and The received power measurement unit 5 receives the data of the individual physical data channel from each sector of the sector ID notified to the UE, and the received power measurement unit 5 outputs the amplitude of the data of the individual physical data channel demodulated by the demodulation unit 4 and the AGC.
- the received power of the individual physical data channel from each sector is measured, and the amplitude of the data of the common pilot channel demodulated by demodulation section 4 and the data Measure the received power of the common pilot channel from each sector based on the setting data of the AGC unit 3.
- step ST82 the determination section 6 compares the reception power of the dedicated physical data channel measured by the reception power measurement section 5 with a predetermined threshold, and in step ST83, the determination section 6 If the received power of the physical data channel is equal to or higher than the predetermined threshold, it is determined that there is data of the individual physical data channel from the sector, and the received power of the individual physical data channel is lower than the predetermined threshold. If this is the case, it is determined that there is no dedicated physical data channel from that sector, and thus the presence or absence of data transmission on the dedicated physical data channel from each sector is determined.
- the candidate selection unit ⁇ transmits the site selection diversity transmission power control SSDT onZoff information notified from the control unit 10 and the individual physical data as the determination result of the determination unit 6.
- the sector is determined as a selection candidate based on the presence / absence of channel data transmission and the DTX on / off information of the TFCI indicating the transport channel configuration notified from the control unit 10.
- step ST85 the candidate selection unit 7 selects a sector having the highest received power of the common pilot channel measured in step ST81 from among the candidates determined as selection candidates in step ST84. Select Diversity Transmit Power Control Select as SSDT candidate.
- the candidate selection section 7 controls the section selected in step ST85 to the modulation section 8. Notify control unit 10.
- the control unit 10 notifies the demodulation unit 4 of the section selected by the candidate selection unit 7, and the demodulation unit 4 demodulates the data of the dedicated physical data channel from the specific sector.
- the processing of modulation section 8 is the same as in the first embodiment.
- FIG. 10 is a diagram for explaining a method of selecting a sector performed by the candidate selecting unit 7 in step ST84 of FIG.
- the candidate selection unit 7 determines a sector as a selection candidate based on SSDT on / off information, whether or not to transmit data of a dedicated physical data channel, and DTX onZo ff information.
- the candidate selection unit 7 determines that sector as a selection candidate regardless of the DTX 0 n / off information.
- DTX is determined to be on by the decoding unit 9, that is, individual physical data is determined by TFCI determination.
- the candidate selection unit 7 does not remove the sexda from the selection candidates, but the decoding unit 9 determines that D TX is off, that is, the individual physical data channel is determined by the TFCI determination. Has been sent When it is determined that the sector is selected, the candidate selecting unit 7 removes the sector from the selection candidates. Further, when the SSDT is off, the candidate selection unit 7 transmits the FBI (Feedback Function) transmitted from the mobile station to the sector regardless of the determination result of the determination unit 6 and the DTX on / off information. Does not generate
- the candidate selecting unit 7 determines whether the individual physical channel determined based on the site selection diversity transmission power control SSDT on / off information and the received power of the individual physical data channel. By selecting the section based on the presence / absence of data transmission on the data overnight channel and the TFCI DTX 0 n / off information indicating the transport channel configuration, Selection Diversity Transmission Power Control Effective sectors that can be candidates for SSDT can be selected with high accuracy, and the effect of reducing the stagnation of data to be transmitted on the network side can be obtained.
- the mobile station has to wait until the line condition is restored, but according to the seventh embodiment, The effect is obtained that the reception probability of the individual physical data overnight channel can be improved.
- the block diagram showing the configuration of the mobile station according to the eighth embodiment of the present invention is the same as that of FIG. 8 of the seventh embodiment, except that received power measuring section 5 performs individual physical control from the selected sector.
- received power measuring section 5 performs individual physical control from the selected sector.
- the received power of the common pilot channel from each sector is also measured. It is determined whether data is transmitted. As described in Embodiment 7, when the data of the dedicated physical data channel is not transmitted, the TFCI section is DTXed and the TFCI section is not transmitted. It is possible to determine the presence or absence of data transmission on the overnight channel.
- FIG. 11 is a flowchart showing a flow of processing of a mobile station according to Embodiment 8 of the present invention.
- the mobile station has selected and notified and received the data of the dedicated physical control channel from each sector of the sector ID which has already been notified, and received power measurement unit 5 demodulated by demodulation unit 4.
- the received power of the TFCI section of the dedicated physical control channel from each sector is calculated.
- the received power of the common pilot channel from each sector is measured based on the data amplitude of the common pilot channel demodulated by the demodulation unit 4 and the setting data of the AGC unit 3.
- step ST92 the determination unit 6 compares the reception power of the TFCI unit of the dedicated physical control channel measured by the reception power measurement unit 5 with a predetermined threshold, and in step ST93, the determination unit 6 If the received power of the TFCI section is equal to or higher than the predetermined threshold, it is determined that there is data on the individual physical data channel from the sector. By determining that there is no data on the physical data channel, it is determined whether or not data transmission on the individual physical data channel from each sector is present.
- the candidate selection unit 7 makes a determination based on the site selection diversity transmission power control SSDT 0 n / off information and the transmission power of the TFCI unit of the dedicated physical control channel.
- Site selection diversity transmission power control SSDT by selecting sections based on the presence or absence of transmission of individual physical data channels and the TFCI D TX onZo ff information indicating the transport channel configuration.
- Embodiment 9 when the sector selected by the mobile station does not transmit the data of the dedicated physical data channel, the mobile station has to wait until the line condition is restored. This has the effect that the reception probability of the dedicated physical data channel can be improved.
- the block diagram showing the configuration of the mobile station according to the ninth embodiment of the present invention is the same as that of FIG. 8 of the seventh embodiment, except that received power measuring section 5 has a dedicated physical control channel from the selected sector.
- received power measuring section 5 has a dedicated physical control channel from the selected sector.
- the received power of the common gateway channel from each sector is also measured, and the decision section 6 determines the individual power based on the received power of the gateway section of the individual physical control channel. It is determined whether the physical data channel is transmitted overnight.
- the dedicated physical control channel includes a pilot section (pilot symbol) for performing synchronous detection.
- pilot section pilot symbol
- the received power of the pilot port is measured to determine the individual physical data channel. Can be determined.
- FIG. 12 is a flowchart showing a flow of processing of a mobile station according to Embodiment 9 of the present invention.
- the mobile station receives the data of the dedicated physical control channel from each sector of the sector ID that has already been selected and notified, and the received power measurement unit 5 Based on the amplitude integrated value of the physical control channel's pilot section and the setting data of the AGC section 3, the received power of the pilot section from each sector is measured, and the common pilot demodulated by the demodulation section 4 is measured. The received power of the common pilot channel from each sector is measured based on the data channel amplitude and the setting data of the AGC unit 3.
- step ST102 the deciding section 6 compares the received power of the pilot section of the dedicated physical control channel measured by the received power measuring section 5 with a predetermined threshold, and in step ST103, the deciding section 6 6 is the pilot section 38
- the received power is equal to or higher than the predetermined threshold, it is determined that there is an overhaul of the dedicated physical data channel from that sector. If the received power of the pilot section is lower than the predetermined threshold, the By determining that there is no dedicated physical data channel data transmission, it is determined whether or not each sector has a dedicated physical data channel data transmission.
- the candidate selection unit 7 makes the determination based on the site selection diversity transmission power control SSDT on / off information and the reception power of the dedicated physical control channel's pilot unit.
- Site selection diversity transmission power control SSDT by selecting sections based on the presence / absence of data transmission of individual physical data channels and the TFCI DTX on / off information indicating the transport channel configuration. This makes it possible to select an effective sector as a candidate for the transmission with high accuracy, and to reduce the amount of data that must be transmitted on the network side.
- Embodiment 10 when the section selected by the mobile station does not transmit data of the dedicated physical data channel, the mobile station has to wait until the line condition is restored. According to the ninth embodiment, The effect is obtained that the reception probability of the individual physical data overnight channel can be improved. Embodiment 10
- the block diagram showing the configuration of the mobile station according to the tenth embodiment of the present invention is the same as that of FIG. 8 of the seventh embodiment, except that reception power measuring section 5 transmits the individual physical control channel from the selected sector. Measure the received power of the pilot section and the received power of the TFCI section, and use the common pilot channel from each sector. The decision unit 6 measures the reception power of the individual physical data channel based on the difference between the reception power of the pilot unit and the reception power of the TFCI unit.
- the dedicated physical control channel includes a pilot section (pilot symbol) for performing synchronous detection
- the pilot section is related to whether or not the dedicated physical data channel is transmitted. Since the TFCI part of the dedicated physical control channel is not transmitted when the data of the dedicated physical data channel is not transmitted, calculate the difference between the received power of the pilot part and the received power of the TFCI part. Thus, the presence or absence of transmission of the data of the individual physical data channel can be determined.
- FIG. 13 is a flowchart showing a flow of processing of the mobile station according to Embodiment 10 of the present invention.
- the mobile station receives the data of the dedicated physical control channel from each sector of the sector ID selected and notified by the mobile station, and the received power measurement unit 5 receives the dedicated physical control signal demodulated by the demodulation unit 4.
- the received power of the pilot section from each sector is measured, and the individual physical control channel demodulated by the demodulation section 4 is demodulated.
- the received power of the TFCI section from each sector is measured.
- the received power measurement unit 5 receives the common pilot channel from each sector based on the data amplitude of the common pilot channel demodulated by the demodulation unit 4 and the setting data of the AGC unit 3. Measure the power.
- step ST112 the determination unit 6 calculates the difference between the received power of the pilot unit and the received power of the TFCI unit and compares it with a predetermined threshold.
- step ST113 the determination unit 6 And the TFCI section If the difference between the received powers of the pilot section and the TFCI section is smaller than the predetermined threshold, it is determined that there is a dedicated physical data channel from the sector. If the value is equal to or larger than the predetermined threshold value, it is determined that there is no data of the dedicated physical data channel from the sector, so that the presence or absence of transmission of the dedicated physical data channel from each sector is determined.
- steps ST114 and ST115 is the same as the processing in steps ST84 and ST85 in FIG. 9 of the seventh embodiment, and the method of selecting a section by the candidate selection unit 7 is performed.
- the contents are the same as those shown in FIG. 10 of Embodiment 7.
- determination section 6 determines whether or not to transmit data of the dedicated physical data channel based on the difference between the reception power of the pilot section and the reception power of the TFCI section.
- the transmission / reception of data on the dedicated physical data channel may be determined based on the ratio of the reception power of the TFCI unit to the reception power of the TFCI unit.
- the received power measuring section 5 measures the received power of the pilot section of each sector based on the amplitude integrated value of the pilot section and the setting data of the AGC section 3,
- the received power of the TFCI section in each sector is measured based on the amplitude integral value of the TFCI section and the setting data of the AGC section 3, but the pyrolysis is performed without using the setting data of the AGC section 3.
- the relative difference between the amplitude integral values of the slot and TFCI may be measured.
- the candidate selection unit 7 performs the site selection diversity transmission power control SSDT 0 n / off information, the reception power of the pilot unit, and the TFCI unit.
- Site selection is performed by selecting the sector based on the presence / absence of transmission of the dedicated physical data channel determined by the received power and the TFCI D TX on / off information indicating the transport channel configuration
- Diversity transmission power control Valid sectors that can be SSDT candidates can be selected accurately, and data on the network side can be selected. —The effect of reducing the stay in the evening can be obtained.
- the mobile station when the section selected by the mobile station does not transmit data of the dedicated physical data channel, the mobile station has to wait until the line condition is restored. However, there is an effect that the reception probability of the individual physical data channel can be improved.
- Embodiments 7 to 10 described above and Embodiments 8 to 10 may be appropriately combined with Embodiment 7 and used.
- Embodiment 7 it is determined that there is data transmission on the dedicated physical data channel, and any one of Embodiments 8 to 10 has determined that there is no data transmission on the dedicated physical data channel. In this case, it may be finally determined that the data of the dedicated physical data channel is transmitted.Also, it is determined that the data of the dedicated physical data channel is transmitted in the seventh embodiment. If any one of the modes 10 determines that the transmission of the dedicated physical data channel is performed overnight, it may be finally determined that the transmission of the dedicated physical data channel is performed overnight.
- Industrial applicability it is determined that there is data transmission on the dedicated physical data channel, and any one of Embodiments 8 to 10 has determined that there is no data transmission on the dedicated physical data channel. In this case, it may be finally determined that the data of the dedicated physical data channel is transmitted.Also, it is determined that the data of the dedicated physical data channel is transmitted in the seventh embodiment
- the mobile station according to the present invention is suitable for a mobile station that reduces the stagnation of data to be transmitted on the network side and improves the data reception probability of the mobile station.
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Description
Claims
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
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JP2004502504A JP4364788B2 (ja) | 2002-04-30 | 2002-04-30 | 移動局におけるセクタ選択方法 |
US10/509,337 US20050186964A1 (en) | 2002-04-30 | 2002-04-30 | Mobile station |
EP02720639A EP1501213A1 (en) | 2002-04-30 | 2002-04-30 | Mobile station |
PCT/JP2002/004338 WO2003094390A1 (fr) | 2002-04-30 | 2002-04-30 | Station mobile |
CNA028288718A CN1625854A (zh) | 2002-04-30 | 2002-04-30 | 移动台 |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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PCT/JP2002/004338 WO2003094390A1 (fr) | 2002-04-30 | 2002-04-30 | Station mobile |
Publications (1)
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WO2003094390A1 true WO2003094390A1 (fr) | 2003-11-13 |
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PCT/JP2002/004338 WO2003094390A1 (fr) | 2002-04-30 | 2002-04-30 | Station mobile |
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US (1) | US20050186964A1 (ja) |
EP (1) | EP1501213A1 (ja) |
JP (1) | JP4364788B2 (ja) |
CN (1) | CN1625854A (ja) |
WO (1) | WO2003094390A1 (ja) |
Cited By (1)
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WO2009004700A1 (ja) * | 2007-06-29 | 2009-01-08 | Fujitsu Limited | 受信機及び受信処理方法 |
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IT1286046B1 (it) * | 1996-10-25 | 1998-07-07 | Whirlpool Europ S R L | Corpo coibentato,per esempio con poliuretano espanso o similare, quale un armadio frigorifero,presentante una pluralita' di vani |
AU2003254251A1 (en) * | 2002-07-31 | 2004-02-16 | Interdigital Technology Corporation | Improved cdma tdd receiver |
US7110766B1 (en) * | 2005-05-31 | 2006-09-19 | Motorola, Inc. | Method of generating a handoff candidate list |
JP4749464B2 (ja) * | 2006-03-20 | 2011-08-17 | 富士通株式会社 | 基地局、移動局、無線通信システム及び通信方法 |
FI20060666A0 (fi) * | 2006-07-07 | 2006-07-07 | Nokia Corp | Menetelmä ja järjestelmä epäjatkuvan lähetyksen toiminnallisuuden parantamiseksi |
US8843074B2 (en) * | 2007-02-28 | 2014-09-23 | Ntt Docomo, Inc. | User apparatus, base station apparatus and communication control method in mobile communication system |
WO2013162432A1 (en) * | 2012-04-25 | 2013-10-31 | Telefonaktiebolaget L M Ericsson (Publ) | Power saving in a multiple sector radio base station |
CN109089296B (zh) * | 2018-08-17 | 2021-06-08 | 北京通广龙电子科技有限公司 | 基于动态tdma时隙分配技术的定向邻居发现方法 |
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- 2002-04-30 EP EP02720639A patent/EP1501213A1/en not_active Withdrawn
- 2002-04-30 WO PCT/JP2002/004338 patent/WO2003094390A1/ja not_active Application Discontinuation
- 2002-04-30 JP JP2004502504A patent/JP4364788B2/ja not_active Expired - Fee Related
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Also Published As
Publication number | Publication date |
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JPWO2003094390A1 (ja) | 2005-09-08 |
CN1625854A (zh) | 2005-06-08 |
EP1501213A1 (en) | 2005-01-26 |
JP4364788B2 (ja) | 2009-11-18 |
US20050186964A1 (en) | 2005-08-25 |
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