WO2005107186A1 - 通信装置 - Google Patents
通信装置 Download PDFInfo
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- WO2005107186A1 WO2005107186A1 PCT/JP2005/005166 JP2005005166W WO2005107186A1 WO 2005107186 A1 WO2005107186 A1 WO 2005107186A1 JP 2005005166 W JP2005005166 W JP 2005005166W WO 2005107186 A1 WO2005107186 A1 WO 2005107186A1
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- WIPO (PCT)
- Prior art keywords
- communication
- line
- per unit
- communication system
- upper limit
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L12/00—Data switching networks
- H04L12/02—Details
- H04L12/14—Charging, metering or billing arrangements for data wireline or wireless communications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L45/00—Routing or path finding of packets in data switching networks
- H04L45/02—Topology update or discovery
- H04L45/06—Deflection routing, e.g. hot-potato routing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L12/00—Data switching networks
- H04L12/02—Details
- H04L12/14—Charging, metering or billing arrangements for data wireline or wireless communications
- H04L12/1403—Architecture for metering, charging or billing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L12/00—Data switching networks
- H04L12/02—Details
- H04L12/14—Charging, metering or billing arrangements for data wireline or wireless communications
- H04L12/141—Indication of costs
- H04L12/1414—Indication of costs in real-time
- H04L12/1417—Advice of charge with threshold, e.g. user indicating maximum cost
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L12/00—Data switching networks
- H04L12/02—Details
- H04L12/14—Charging, metering or billing arrangements for data wireline or wireless communications
- H04L12/1432—Metric aspects
- H04L12/1439—Metric aspects time-based
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L47/00—Traffic control in data switching networks
- H04L47/10—Flow control; Congestion control
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L47/00—Traffic control in data switching networks
- H04L47/10—Flow control; Congestion control
- H04L47/29—Flow control; Congestion control using a combination of thresholds
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M15/00—Arrangements for metering, time-control or time indication ; Metering, charging or billing arrangements for voice wireline or wireless communications, e.g. VoIP
- H04M15/88—Provision for limiting connection, or expenditure
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/24—Accounting or billing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2215/00—Metering arrangements; Time controlling arrangements; Time indicating arrangements
- H04M2215/01—Details of billing arrangements
- H04M2215/0116—Provision for limiting expenditure, e.g. limit on call expenses or account
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2215/00—Metering arrangements; Time controlling arrangements; Time indicating arrangements
- H04M2215/20—Technology dependant metering
- H04M2215/2026—Wireless network, e.g. GSM, PCS, TACS
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2215/00—Metering arrangements; Time controlling arrangements; Time indicating arrangements
- H04M2215/22—Bandwidth or usage-sensitve billing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2215/00—Metering arrangements; Time controlling arrangements; Time indicating arrangements
- H04M2215/32—Involving wireless systems
Definitions
- the present invention relates to a line selection technology in a communication device that can be simultaneously connected to a plurality of wireless communication systems of the same type and different types.
- Communication devices that relay data packets include PDC (Personal Digital Cellular),
- Non-Patent Document 1 There is a Mopile Inverse MUX technology that realizes one wide-band logical link by connecting a plurality of narrow-band cellular wireless communication systems such as Telecommunication Systems) and cdma2000 simultaneously (for example, Non-Patent Document 1).
- Non-Patent Document 1 Okanoue et al., "Mobile Internet (1) Basic Concept and System Configuration", IEICE, 2004 General Conference, B-5-163
- Non-patent document 2 Nakata et al., "Mobile Internet (2) Flow control method", IEICE, 2004 General Conference, B-5-164
- Non-Patent Document 3 Ono et al., "Mobile Internet (3) Playback Control Method", IEICE, 2004 General Conference, B-5-165
- Patent Document 1 JP 2003-134031 A
- Patent Document 2 Japanese Patent Application Laid-Open No. 11-187157
- Patent Document 1 or Patent Document 2 described above is a method for selecting one line connected to a wireless system, and is a different method such as Inverse MUX technology. It cannot be used in a system that selects a line for simultaneous connection with multiple wireless systems.
- the selection method described in Patent Document 2 can reduce the communication fee as much as possible, but cannot reduce the communication fee to a predetermined upper limit or less.
- the present invention has been made in view of the above-mentioned problems, and an object of the present invention is to provide a communication system capable of simultaneously connecting to a plurality of communication systems of the same type and different types, and as much as possible Increase the number of lines connected to the communication system, stabilize the logical link and increase the bandwidth, maintain the target value set by the service provider, and keep the communication fee within the target amount set by the service provider. It is to provide a technology that can.
- a first invention for solving the above problem is a communication device which can be simultaneously connected to a plurality of communication systems of the same kind and different types including a communication system to which pay-per-use is applied,
- An overall operation policy that is information on a target minimum value of a communication rate or an upper limit of a communication charge that integrates at least a plurality of communication systems;
- a line-by-line operation policy which is information for operation of each communication system
- And line selecting means for selecting a line of each communication system based on the line-by-line operation policy, communication line quality information and statistical information so as to satisfy the overall operation policy.
- an upper limit of a communication fee of the overall operation policy is an upper limit per unit time
- the line-by-line operation policy includes a use priority set for each communication system and a maximum number of connectable lines,
- the statistical information includes the number of transmitted / received packets or the communication time of the communication device, and the line selecting unit calculates the unit time calculated from the number of transmitted / received packets or the communication time. If the actual communication fee per unit is equal to or less than the upper limit per unit time and the number of packets transmitted / received is equal to or less than the target minimum value of the communication rate, it is obtained from the communication line quality information. Select and connect a line of the communication system of the line having the higher use priority among communication systems in which the communication line quality is at a communicable level and the number of connected lines is less than the maximum number of lines. It is characterized by having such a configuration.
- a second invention for solving the above-mentioned problems is the first or the second invention, wherein the upper limit of the communication fee of the overall operation policy is an upper limit per unit time,
- the line-by-line operation policy includes a use priority set for each communication system, the statistical information includes a number of transmitted / received packets or a communication time of the communication device, and the line selection unit includes: If the communication rate calculated from is equal to or more than the target minimum value of the communication rate and the actual communication charge per unit time calculated from the number of transmitted / received packets or the communication time is equal to or more than the upper limit per unit time, The communication system having the lower use priority is selected from the lines of the connected communication system, and the line of the communication system is disconnected.
- a fourth invention for solving the above-mentioned problem is the invention according to any one of the first to third inventions, wherein an upper limit of a communication fee of the overall operation policy is an upper limit per unit time,
- the operation policy includes the charging system and usage priority set for each communication system,
- the statistical information includes the number of transmitted / received packets or the communication time of the communication device, the line selecting unit determines that a communication rate calculated from the number of transmitted / received packets is equal to or greater than a target minimum value of the communication rate, and If the actual communication fee per unit time calculated from the communication time is equal to or more than the upper limit per unit time, the communication system with the lower use priority is selected from among the lines of the connected communication system, and When the charging system of the communication system is packet-based charging, the transmission rate on the line of the communication system is suppressed so that the actual communication fee per unit time does not exceed the upper limit per unit time. It is characterized by having been done.
- a fifth invention for solving the above-mentioned problems is the invention according to any one of the first to fourth inventions, wherein an upper limit of a communication charge of the overall operation policy is an upper limit per unit time;
- the operation policy includes the charging system, charging rate, and usage priority set for each communication system.
- the statistical information includes the number of transmitted / received packets or the communication time of the communication device, and the line selecting unit determines that the communication rate calculated from the number of transmitted / received packets or the communication time is equal to or greater than a target minimum value of the communication rate;
- the communication system having the lower use priority among the lines of the connected communication system. Is selected, and if the charging system of this communication system is packet-based charging, the communication fee per unit time calculated from the charging rate of the line of the communication system and the number of transmission / reception packets of the line of the communication system. Is larger than the difference between the upper limit per unit time and the actual communication charge per unit time, Characterized in that it is configured to suppress the transmission rate.
- a sixth invention for solving the above-mentioned problems is characterized in that, in any one of the first to fifth inventions, an upper limit of a communication charge of the overall operation policy is an upper limit per unit time;
- the operation policy includes the charging system, charging rate, and usage priority set for each communication system.
- the statistical information includes the number of transmission / reception packets or the communication time of the communication device.
- the line selection unit determines that the communication rate calculated from the number of transmission / reception packets is equal to or greater than a target minimum value of the communication rate, and that the communication time or the transmission / reception
- the communication system with the lower use priority is selected from the lines of the already connected communication system, and If the charging system of the communication system is packet-based charging, the communication fee per unit time calculated from the charging rate of the line of the communication system and the number of packets transmitted and received by the communication system is the upper limit per unit time.
- the statistical information includes the number of transmission / reception packets or communication time of the communication device,
- the line selecting means may be configured such that the communication time calculated from the communication time or the number of transmitted / received packets or the communication time is equal to or less than the upper limit of the communication fee, and the communication rate calculated from the number of transmitted / received packets is a target of the communication rate.
- the transmission rate is suppressed from being suppressed for the line whose transmission rate is suppressed.
- An eighth invention for solving the above-mentioned problems is provided in any of the first to seventh inventions, wherein the communication device is provided in a mobile device that moves,
- the overall operation policy of the communication device differs according to the occupancy rate of the mobile device.
- a ninth invention for solving the above-mentioned problems is provided in any of the first to eighth inventions, wherein the communication device is provided in a mobile device that moves,
- the overall operation policy of the communication device is different depending on the position of the mobile device.
- a tenth invention for solving the above-mentioned problems is a communication device which can be simultaneously connected to a plurality of communication systems of the same kind and different types including a communication system to which metered-charge is applied,
- It has a line selecting means for determining a communication system to be connected based on a line-by-line operation policy, communication line quality, and statistical information measured in the communication device.
- An eleventh invention for solving the above problem is a line selection method of a communication device that can be simultaneously connected to a plurality of communication systems of the same type and different types including a communication system to which usage-based charging is applied,
- a line selection step for selecting a line of each communication system so as to satisfy a target minimum value of a communication rate or an upper limit of a communication fee by integrating a plurality of communication systems.
- a twelfth invention for solving the above-mentioned problems is the above-mentioned eleventh invention, wherein The upper limit of the communication fee of Rishi is the upper limit per unit time,
- the line-by-line operation policy includes a use priority set for each communication system and a maximum number of connectable lines,
- the statistical information includes the number of transmitted / received packets or the communication time of the communication device, and the line selecting step includes determining that an actual communication fee per unit time calculated from the number of transmitted / received packets or the communication time is equal to or less than the upper limit per unit time. And when the calculated communication rate is equal to or less than the target minimum value of the communication rate, the communication line quality obtained from the communication line quality information is at a communicable level, and The communication system is characterized in that a line of the communication system having the higher use priority is selected and connected from the communication systems in which the number of lines is less than the maximum number of lines.
- a thirteenth invention for solving the above-mentioned problems is characterized in that, in the above-mentioned eleventh or twelfth invention, an upper limit of a communication charge of said overall operation policy is an upper limit per unit time,
- the line-by-line operation policy includes a use priority set for each communication system, the statistical information includes the number of transmission / reception packets or communication time of the communication device, and the line selection step includes: If the communication rate calculated from the above is equal to or higher than the target minimum value of the communication rate and the actual communication charge per unit time calculated from the number of transmitted / received packets or the communication time is equal to or higher than the upper limit per unit time, the connection is established.
- the communication system having the lower use priority is selected from the lines of the middle communication system, and the line of the communication system is disconnected.
- a fourteenth invention for solving the above-mentioned problems is characterized in that, in any one of the above-mentioned eleventh to thirteenth inventions, an upper limit of a communication charge of said overall operation policy is an upper limit per unit time.
- Each operation policy includes a charging system and usage priority set for each communication system,
- the statistical information includes the number of transmitted / received packets or the communication time of the communication device, and the line selecting step includes the step of: determining that a communication rate calculated from the number of transmitted / received packets is equal to or greater than a target minimum value of the communication rate; Or, the actual communication fee per unit time calculated from the communication time is equal to or greater than the upper limit per unit time.
- the communication system with the lower use priority is selected from the lines of the connected communication system, and the charging system of this communication system is packet-based charging, the actual communication fee per unit time is equal to the unit communication time.
- the transmission rate on the line of the communication system is suppressed so as not to exceed the upper limit per hour.
- a fifteenth invention for solving the above-mentioned problems is characterized in that, in any one of the eleventh to fourteenth inventions, an upper limit of a communication charge of the overall operation policy is an upper limit per unit time.
- Each operation policy includes a charging system, a charging rate, and a use priority set for each communication system.
- the statistical information includes the number of transmission / reception packets or communication time of the communication device, and the line selection step includes the step of selecting a communication rate calculated from the number of transmission / reception packets or communication time being equal to or greater than a target minimum value of the communication rate;
- the communication system with the lower use priority among the lines of the already connected communication system is used.
- the communication fee per unit time calculated from the charging rate of the line of the communication system and the number of packets transmitted and received on the line of the communication system is: When the difference between the upper limit per unit time and the actual communication charge per unit time is larger, which comprises suppressing the transmission rate of the line.
- a sixteenth invention for solving the above-mentioned problems is characterized in that, in any one of the eleventh to fifteenth inventions, an upper limit of a communication charge of said overall operation policy is an upper limit per unit time.
- Each operation policy includes a charging system, a charging rate, and a use priority set for each communication system.
- the statistical information includes the number of transmitted / received packets or the communication time of the communication device, and the line selection step includes the step of: determining that a communication rate calculated from the number of transmitted / received packets is equal to or greater than a target minimum value of the communication rate; The actual communication charge per unit time calculated from the number of transmitted and received packets is equal to or greater than the upper limit per unit time.
- the communication system having the lower use priority is selected, and when the charging system of this communication system is packet-based charging, the charging rate of the communication system line is selected. Only when the communication charge per unit time calculated from the number of packets transmitted and received by the communication system is equal to or less than the difference between the upper limit per unit time and the actual communication charge per unit time, the line of the communication system Is cut.
- a seventeenth invention for solving the above-mentioned problems is characterized in that, in any one of the eleventh to sixteenth inventions, said statistical information includes the number of transmission / reception packets or communication time of said communication device, The communication fee calculated from the communication time or the number of transmitted / received packets or the communication time is equal to or less than the upper limit of the communication fee, and the number of transmitted / received packets is calculated and the communication rate is equal to or less than the target minimum value of the communication rate; In addition, when there is a line whose transmission rate is suppressed, the suppression of the transmission rate of the line whose transmission rate is suppressed is released.
- An eighteenth invention for solving the above-mentioned problems is provided in any of the eleventh to seventeenth inventions, wherein the communication apparatus is provided in a mobile device that moves,
- the overall operation policy of the communication device differs according to the occupancy rate of the mobile device.
- a nineteenth invention for solving the above-mentioned problems is provided in any of the eleventh to eighteenth inventions, wherein the communication device is provided in a mobile device that moves,
- the overall operation policy of the communication device is different depending on the position of the mobile device.
- a twentieth invention for solving the above-mentioned problem is a line selection method of a communication device that can be simultaneously connected to a plurality of communication systems of the same type and different types including a communication system to which usage-based charging is applied,
- a twenty-first invention for solving the above-mentioned problems includes a communication system to which usage-based charging is applied.
- a computer-readable program that controls the operation of a communication device that can be simultaneously connected to a plurality of communication systems of the same type and different types.
- a line selection step for selecting a line of each communication system so as to satisfy a target minimum value of a communication rate or an upper limit of a communication fee by integrating a plurality of communication systems.
- the present invention relates to a communication apparatus capable of simultaneously connecting to a plurality of wireless systems of the same type and different types, wherein a target upper limit value of a communication charge per unit time or an overall operation policy of a target communication rate desired by a service provider, for example.
- a target upper limit value of a communication charge per unit time or an overall operation policy of a target communication rate desired by a service provider for example.
- a line-by-line operation policy 320 that stores information such as a use priority, a communication rate, a charging system, a charging rate, and the maximum number of lines is provided for each line type.
- the communication device determines the current communication state based on the collected statistical information 400, and determines that the communication state is contrary to the information of the overall operation policy 310, for example, the amount of communication per unit time. If the communication fee per unit time exceeds the target upper limit or if the target communication rate has not been reached, consider the use priority of the line type and the communication cost associated with the use of each line. Select and connect or disconnect the line, and adjust the line usage rate.
- the present invention it is possible to prevent an increase in communication fee while maintaining a target communication rate or more. This means that if the communication rate exceeds the target communication rate, disconnect the line with the lower priority of using the medium power of the currently connected line or adjust the line usage rate while maintaining the target communication rate or higher. Because you do.
- the communication charge does not exceed the communication charge target upper limit set in advance by the service provider. This is calculated from the communication charge target upper limit value from the communication charge target upper limit value, and the actual communication charge per unit time is calculated as the communication charge per unit time. If the target price exceeds the gold target upper limit, the line is disconnected in the case of the time-based charging line, and the transmission rate is suppressed in the case of the packet-based charging line.
- FIG. 1 is a network configuration diagram for describing an embodiment of the present invention.
- FIG. 2 is a configuration diagram of an MR for describing an embodiment of the present invention.
- FIG. 3 is a policy information table for explaining an embodiment of the present invention.
- FIG. 4 is a statistical information table for explaining an example of the present invention.
- FIG. 5 is a quality information table for explaining an embodiment of the present invention.
- FIG. 6 is a configuration diagram of an HA for describing an embodiment of the present invention.
- FIG. 7 is an operation flowchart of a line selection process for explaining the first embodiment of the present invention.
- FIG. 8 is a graph of a communication rate with respect to a time axis for explaining Embodiment 1 of the present invention.
- FIG. 9 is a graph of a communication rate with respect to a time axis for explaining Embodiment 2 of the present invention.
- FIG. 10 is a policy information table for explaining Embodiment 2 of the present invention.
- FIG. 11 is a graph of a communication cost per unit time with respect to a time axis for explaining Embodiment 3 of the present invention.
- FIG. 12 is a graph of a communication cost per unit time with respect to a time axis for explaining Embodiment 4 of the present invention.
- FIG. 13 is a policy information table for explaining Embodiment 4 of the present invention.
- FIG. 14 is a graph of a cumulative communication cost with respect to a time axis for explaining Embodiment 5 of the present invention.
- FIG. 15 is a policy information table for explaining Embodiment 5 of the present invention.
- FIG. 16 is a graph of cumulative communication costs with respect to a time axis for explaining Embodiment 6 of the present invention.
- FIG. 17 is a policy information table for explaining Embodiment 6 of the present invention.
- a home agent 20 (hereinafter referred to as HA) connected to the Internet network 10 is a PDC network.
- This MR40 is a modem 70-77 (PDC modems 70, 71,
- Ethernet (registered trademark) IF80 for connection is also built-in.
- the Ethernet (registered trademark) IF80 is connected to an IEEE 802.11 compliant wireless LAN access point 50-52 (hereinafter referred to as AP) connected in multiple stages via an Ethernet (registered trademark) cable 90-92.
- the MR 40 notifies the HA 20 of the type of the available wireless link group from time to time, so that the plurality of wireless links between the HA and the MR are regarded as one broadband logical link, and packets destined to each other are transmitted. Of which wireless line group is to be used for transmission.
- the MNNs 60-62 in the mobile network 100 including the MR 40 can access the Internet via the wireless LAN APs 50-52.
- the MR40 has, for example, a configuration as shown in FIG. More specifically, the MR40 includes a modem 7077 and an Ethernet (registered trademark) IF80, and includes a policy information management unit 200, a line selection unit 210, a statistical information acquisition unit 220, an IP / L4 processing unit 230, and a line management unit. Consists of 240. Hereinafter, basic processing contents in each of these processing units will be described.
- the line management unit 240 receives the instruction from the line selection unit 210, performs up / down control of the PPP links of the plurality of modems 70-77, and obtains the line quality information periodically acquired from the modems 70-77. 500, of which information specified in advance by the line selection unit 210 is specified. It notifies the line selection unit 210 at the set cycle.
- the line quality information 500 is information relating to the communication quality of each line, and is, for example, information on the area within or outside the area of the corresponding line, and reception quality.
- the IP / L4 processing unit 230 performs IP processing and L4 processing of a packet received from the Ethernet (registered trademark) IF80 and the modem 7077 and a packet to be transmitted.
- the IP / L4 processing unit 230 also forwards packets destined for the HA20 and MNN6062, collects the statistical information of the transferred packets, and, at the cycle specified by the statistical information acquiring unit 220, collects the statistical information. Notify.
- the IP / L4 processing unit 230 has a capability of scheduling which of the modems 70-77 is to be transmitted from among the modems 70-77. Schedule taking into account the line usage rate notified from the line selection unit 210 via 240.
- the statistical information acquiring unit 220 collects statistical information including the number of transmitted / received packets and the number of bytes per unit time from the IP / L4 processing unit 230, and stores the collected statistical information as statistical information 400. The designated statistical information is notified to the line selection unit 210 at the specified cycle.
- the line selection unit 210 acquires the policy information 300 held by the policy information management unit 200, the statistical information 400 held by the statistical information acquisition unit 220, and the line quality information 500 held by the line management unit 240. Judgment of the line type to be used or the utilization rate of each line is determined based on this information, and the line management unit 240 is notified. Also, when changing the downlink usage rate, the channel selection unit 210 transmits signaling including the channel type and its usage rate to the HA 20 via the IP / L4 processing unit 230.
- the policy information 300 held by the MR 40 includes, for example, as shown in FIG. 3, overall operation policy information 310 and line-by-line operation policy information 320.
- the overall operation policy information 310 includes a target minimum communication rate of the mobile network 100 handled by the MR 40 and a target upper limit of communication charges.
- the line-by-line operation policy information 320 includes, for each line type, a use priority of the line, an expected communication rate (average downlink rate, average uplink rate), a charging system, a charging rate, and a maximum number of lines. Is done.
- the statistical information 400 held by the MR 40 includes, for example, as shown in FIG. 4, for each line, the status of the line (in use (On) or not used (Off)), downlink communication It consists of rate, uplink communication rate, number of received packets per unit time, number of transmitted packets per unit time, connection time, and line usage rate.
- PDC line type
- the statistical information 400 shown in FIG. 4 records information separately for two lines, PDQI1 and PDQI2.
- the line quality information 500 held by the MR 40 includes, for example, as shown in FIG. 5, the status of each line, the determination of the in-range / out-of-range area of the line, and the reception quality.
- the line quality information 500 shown in FIG. 5 also records information for each line that is different for each line type, like the statistical information 400 shown in FIG. Since the operation policy information 320 has two PDCs (line type), the line quality information 500 shown in FIG. 5 records information by dividing it into two lines, PDC # 1 and PDC # 2. I have.
- the HA 20 has a configuration as shown in FIG. 6, for example. More specifically, the transfer processing unit 920 includes a network interface 900 connected to the leased line network 110, a network interface 910 connected to the Internet 10, a transfer processing unit 920, and a line control unit 930. Has a scheduler 940 inside. The line control unit 930 notifies the transfer processing unit 920 of the line usage rate notified from the MR 40.
- the scheduler 940 determines to which modem among the modems 70 to 77 of the MR 40 the packet received from the network interface 910 is to be transmitted according to the congestion state of the line and the utilization rate of the line.
- the packet determined by is transferred to the MR 40 via the network interface 900 after being encapsulated in the transfer processing unit 920 with an appropriate outer header.
- the transfer processing unit 920 decapsulates the packet received from the network interface 900 and transfers the packet to the Internet 10 via the network interface 910.
- FIG. 7 is a flowchart of the operation of line selection section 210.
- the status of the line quality information 500 is set in descending order of the use priority of the line type of the policy information. Is off, that is, search for an unused line (step 2a). If the corresponding line does not exist, the line selection processing ends (step 3a). If the corresponding line exists, it is checked whether the reception quality of the line quality information 500 of the line is good (step 4a).
- the process returns to the search for the line type (step 5a).
- step 6a If the reception quality is good, it is checked whether the current number of used lines of the type is less than a preset maximum number of lines (step 6a). If the number is equal to or greater than the maximum number of lines, the process returns to the search for the line type (step 7a). If the number is less than the maximum number, it notifies the line control processing unit to establish a PPP link to the line (step 8a).
- the sum of the average rates of the lines added in the line selection processing is compared with the difference between the target value and the actually measured value of the communication rate (step 9a). If the sum of the average rates is smaller than the aforementioned difference, the process returns to the search for the line type (step 10a). If the sum of the average rates is equal to or greater than the above difference, the line selection processing ends.
- step lb If the process is started when the actual measured value of the communication charge exceeds the preset target upper limit value (step lb), the line quality information 500 is set in ascending order of the use priority of the line type of the policy information. A line whose status is On is searched (step 2b), and if there is no corresponding line, the line selection processing ends (step 3b).
- the charging system is determined (step 4b). If the charging system is packet-based charging (step 5b), the reduction per unit time due to the line disconnection in the current line selection process is calculated from the number of transmitted / received packets and the charging rate (step 6b). [0065] The reduction amount is compared with the difference between the actual value of the communication charge and the target upper limit value. If the reduction amount is equal to or less than the difference (Step 7b), the line management unit 240 disconnects the PPP link. And returns to the search for the line type described above (step 8b). If the above reduction is larger than the difference (Step 9b), the line usage rate is calculated so that the reduction matches the difference between the actual value and the upper limit (Step 10b), and the line management unit 240 The type and line usage rate are notified.
- step 12b If the charging system of the line type of the line whose status is On is time-based charging (step 12b), a request is made to the line manager 240 to disconnect the PPP link of the line (step 13b), The amount of reduction per unit time due to the current line disconnection processing is calculated from the connection time and the charging rate (step 14b). This reduction is compared with the difference between the actual value of the communication fee and the target upper limit. If the reduction is less than or equal to the difference, the process returns to the line type search described above (step 15b), and the reduction is calculated based on the difference. If it is larger, the line selection processing ends (step 16b).
- a method of selecting in the order of pre-assigned identifiers can be considered, but a method of selecting at random may be used.
- a method of selecting a line of the same line type may be employed. For example, a line having poor reception quality may be preferentially selected and disconnected.
- Example 1 showing a specific operation of the above-described embodiment will be described.
- the overall operation policy information 310, the line-by-line operation policy information 320, the statistical information 400, and the line quality information 500 are shown in FIGS. 3, 4, and 5. This will be described using the following. Further, a specific operation flow will be described with reference to an operation flow chart of FIG.
- FIG. 8 is a graph in which the actual value 600 and the target minimum value 610 of the communication rate per unit time are plotted in the case where the mobile network 100 also moves from the point A to the point B.
- the line selection unit 210 starts the line selection process.
- the line selecting unit 210 determines the status of the line quality information 500 in descending order of the use priority of the line type of the line-by-line operation policy information 320. Search for an off-line, that is, an unused line (step 2a).
- the use priority level of cdma2000 lx is S “3” and there is one unused line, the lx # 2 line of cdma2000 lx is selected.
- Step 4a it is checked whether the reception quality of the selected cdma2000 lx lx # 2 line is good (Step 4a).
- the line is "good” in the line quality information 500.
- step 6a it is checked whether the number of used lines of the type is equal to or less than a preset maximum number of lines.
- the maximum number of lines of cdma2000 lx is “2 lines” from the per-line operation policy information 320, even if the line of lx # 2 of cdma2000 lx is selected, it is not more than the maximum number of lines.
- the line control processing unit is notified to lx # 2 of cdma2000 lx to establish a PPP link (step 8a).
- the sum of the average rates of the lines added in the current line selection processing is compared with the difference between the target minimum value and the actually measured value of the communication rate (step 9a).
- the line selection processing added this time is one line of lx # 2 of cdma2000 lx, and its downlink average rate is 60kbps.
- the difference between the target minimum value of the communication rate and the measured value is 30 kbps. Therefore, since the sum of the downlink average rates is equal to or greater than the above difference, the line selection processing ends.
- the target minimum value of the downstream communication rate is made uniform from the point A to the point B, whereas in the second embodiment, the target of the communication rate is set according to the boarding rate.
- the lowest value is weighted and distributed will be described.
- FIG. 9 is a graph plotting the actual value 650 and the target minimum value 660 of the communication rate per unit time in the case where the mobile network 100 moves from point A to point B.
- Fig. 10 shows the policy information 301 in Example 2, considering that the occupancy rate between the points A and C is 80% and the occupancy rate between the points C and B is 100%. Overall luck in Figure 10 As shown in the usage policy information 311, the average rate target minimum value 660 is weighted and distributed.
- the power occupancy rate which is the switching of the overall operation policy
- the power occupancy rate is obtained in advance from the reservation status of the train on which the mobile network 100 is mounted, recorded in the overall operation policy information 310, and the occupancy rate is changed.
- the switching may be performed at the timing (in this embodiment, point C).
- the communication rate corresponding to the occupancy rate is determined in advance and described in the overall operation policy information 310, and the occupancy rate is updated in real time, and the operation is performed at the communication rate corresponding to the occupancy rate. Even good ,.
- the line selection unit 210 starts the line selection process.
- the line selection unit 210 searches for a line whose line quality information 500 has a status of Off, that is, an unused line, in descending order of the use priority of the line type in the line-by-line operation policy information 320 (step 2a).
- the use priority level of cdma2000 lx is S “3” and there is one unused line, the lx # 2 line of cdma2000 lx is selected.
- step 4a it is checked whether the reception quality of the selected cdma2000 lx lx # 2 line is good (step 4a).
- the line is "good” in the line quality information 500.
- step 6a it is checked whether the number of used lines of the type is equal to or less than a preset maximum number of lines.
- the maximum number of lines of cdma2000 lx is “2 lines” from the per-line operation policy information 320, even if the line of lx # 2 of cdma2000 lx is selected, it is not more than the maximum number of lines.
- the line control processing unit is notified to lx # 2 of cdma2000 lx to establish a PPP link (step 8a).
- the sum of the average rates of the lines added in the current line selection process is compared with the difference between the target minimum value and the actually measured value of the communication rate (step 9a).
- the line selection processing added this time is one line of lx # 2 of cdma2000 lx, and its downlink average rate is 60kbps.
- the difference between the target minimum value of the communication rate and the measured value is 80 kbps. Therefore, since the sum of the downlink average rates is smaller than the above difference, the process returns to the search for the line type (step 10a).
- the line selection unit 210 searches the line quality information 500 for a status of Off, that is, an unused line, in descending order of the use priority of the line type in the line-by-line operation policy information 320 (step 2a).
- the use priority of the PDC is "4" and there are two unused lines, so the PDQI1 line of the PDC is selected.
- step 6a it is checked whether the number of used lines of the type is less than a preset maximum number of lines.
- the maximum number of lines of the PDC is “2 lines” from the per-line operation policy information 320, even if the line of PDC # 1 of the PDC is selected, it is less than the maximum number of lines.
- the line control processing unit is notified to establish a PPP link to PDC # 1 of the PDC (step 8a).
- the sum of the average rates of the lines added in the current line selection processing is compared with the difference between the target minimum value of the communication rate and the actually measured value (step 9a).
- the downlink average rate of PDC # 1 of the PDC added in this line selection processing is 10 kbps
- the downlink average rate of lx # 2 of cdma2000 lx added previously is 60 kbps, so the sum of the average rates is 70 kbps.
- the difference between the target minimum value of the communication rate and the actually measured value is 80kbps. Therefore, since the sum of the downlink average rates is smaller than the above-mentioned difference, the process returns to the search for the line type (step 10a).
- the line selection unit 210 searches for a line whose status of the line quality information 500 is Off, that is, an unused line, in descending order of the use priority of the line type in the line-by-line operation policy information 320 (step 2a). .
- the use priority of the PDC is “4” and there is one unused line, the line of PDC # 2 of the PDC is selected.
- Step 4a PDC of PDC # reception quality of the second line is checked whether good (Step 4a) 0
- the selected line is the line quality information 500 "good”.
- the reception quality is good, it is checked whether the number of used lines of the type is equal to or less than a preset maximum number of lines (step 6a).
- the maximum number of lines of the PDC is “2 lines” from the per-line operation policy information 320, so that even if the line of PDC # 2 of the PDC is selected, it is not more than the maximum number of lines.
- the line control processing unit is notified to establish a PPP link to PDC # 2 of the PDC (step 8a).
- the sum of the average rates of the lines added in the current line selection processing is compared with the difference between the target minimum value of the communication rate and the actually measured value (step 9a).
- the downlink average rate of PDC # 2 of PDC added in this line selection process is 10 kbps, and the sum of the downlink average rates of lx # 2 of cdma2000 and PDC # 1 of PDC added so far is 70 kbps.
- the sum of the average rates with this addition is 80 kbps.
- the difference between the target minimum value of the communication rate and the measured value is 80 kbps. Therefore, since the sum of the downlink average rates is equal to or greater than the difference described above, the line selection processing ends.
- FIG. 11 is a graph plotting the actual value 700 and the target upper limit value 710 of the communication cost per unit time in the case where the mobile network 100 moves to the point A and the point B.
- the line selection unit 210 starts the line selection process.
- Lines whose status is "On" in the line quality information 500 are searched in the ascending order of the use priority of the line type in the policy information (step 2b).
- the use priority of cdma2000 lx is “3” and lx # l of cdma2000 lx is being used, the line of lx # l of cdma2000 lx is selected.
- step 4b since there is a line type of the line whose status is On, its charging system is determined (step 4b). Since the line of lx # l of cdma2000 lx is packet-based, Step 5b), the amount of reduction per unit time due to the line disconnection in the current line selection processing is calculated from the number of transmitted / received packets and the charging rate (step 6b). Here, the decrease per unit time is 6660 yen (0.0015 ⁇ / packet X (4200000 + 240000) packets) per unit time.
- the above-described reduction amount is compared with the difference between the actual value of the communication fee and the target upper limit value.
- the reduction is 6660 yen (0.0015 yen / packet X (4200000 + 240000) packets), and the difference between the actual communication charge and the target upper limit is 6000 yen. Greater than. Therefore, the line usage rate is calculated so that the reduced amount matches the difference between the actual value and the upper limit (step 10b), and the line type and the line usage rate are notified to the line management unit 240.
- the line usage rate of lx # l of cdma2000 lx is set to 100 _ ((6000/6660) X 100) 10%.
- the target upper limit of the communication cost is uniform from point A to point B, whereas in the present embodiment, the target upper limit of the communication cost is weighted according to the occupancy rate. Are allocated.
- FIG. 12 is a graph plotting the actual value 750 and the target upper limit value 760 of the communication cost per unit time in the case where the mobile network 100 moves to the point A and the point B.
- the communication cost per unit time is weighted in consideration of the fact that the occupancy rate between points A and D is 100% and the occupancy rate between points D and B is 70%. .
- the power occupancy rate which is the switching of the overall operation policy
- the power occupancy rate is obtained in advance from the reservation status of the train on which the mobile network 100 is mounted, recorded in the overall operation policy information 310, and the occupancy rate is changed. (The point D in the present embodiment).
- the communication rate corresponding to the boarding rate is determined in advance and the It is acceptable to update the occupancy rate in real time and to operate at the communication rate corresponding to the occupancy rate.
- the line selector 210 starts the line selection process.
- the lines whose status is "On" in the line quality information 500 are searched in ascending order of the use priority of the line type in the policy information (step 2b).
- the use priority of cdma2000 lx is “3” and lx # l of cdma2000 lx is being used, the line of lx # l of cdma2000 lx is selected.
- the charging system is determined (step 4b). Since the line of lx # l of cdma2000 lx is packet-based charging (step 5b), the reduction per unit time due to the line disconnection in this line selection processing is calculated from the number of transmitted / received packets and the charging rate. (Step 6b). Here, the decrease per unit time is 6660 yen (0.0015 ⁇ / packet X (4200000 + 240000) packets) per unit time.
- the above-described reduction amount is compared with the difference between the actual value of the communication fee and the target upper limit value.
- the reduction is 6660 yen (0.0015 yen / packet X (4200000 + 240000) packets), and the difference between the actual communication charge and the target upper limit is 20000 yen. Smaller. Therefore, it requests the line manager 240 to disconnect the PPP link, and returns to the above-described search of the line type (step 8b).
- a search is made for a line whose status of the line quality information 500 is On in the ascending order of the use priority of the line type of the policy information (step 2b).
- the UMTS usage priority level is 2 ", and since that UMTS # 1 is in use, the UMTS # 1 line is selected.
- step 4b since there is a line type of the line whose status is On, its charging system is determined (step 4b). Since the UMTSttl line is packet-based charging (step 5b), the reduction per unit time due to the line disconnection in the current line selection process is calculated from the number of transmitted / received packets and the charging rate (step 6b). Here, the amount reduced per unit time is It is 14,880 yen (0.002 ⁇ / packet X (6180000 + 1260000) packets).
- the line usage rate is calculated so that the reduced amount matches the difference between the actual value and the upper limit (step 10b), and the line type and the line usage rate are notified to the line management unit 240.
- the line usage rate of UMTS # 1 is set to 100-((2000-6660) / 14880) X 100) 10 percent.
- the communication cost per unit time was used as a comparison index, but in this embodiment, the total communication cost is used as a comparison index.
- Fig. 14 is a graph plotting the total 800 of the actual communication costs and the total 810 of the target upper limit values in the case where the mobile network 100 moves to the point A and the point B.
- the line selection unit 210 starts the line selection process because the total 800 of the actual values exceeds the total 810 of the target upper limit.
- a line whose status is SOn of the line quality information 500 is searched for in the ascending order of the use priority of the line type of the policy information (step 2b).
- the use priority of cdma2000 lx is “3” and lx # l of cdma2000 lx is being used, the line of lx # l of cdma2000 lx is selected.
- step 4b Since the line of lx # l of cdma2000 lx is packet-based charging (step 5b), the reduction per unit time due to the line disconnection in this line selection processing is calculated from the number of transmitted / received packets and the charging rate. (Step 6b).
- the decrease per unit time is 6660 yen (0.0015 ⁇ / packet X (4200000 + 240000) packets) per unit time.
- the above-described reduction amount is compared with the difference between the actual value of the communication fee and the target upper limit value.
- the decrease is 6660 yen (0.0015 ⁇ / packet X (4200000 + 240000) packets), and the actual increase in communication charges per unit time and the target for the increase in communication charges per unit time Since the difference from the upper limit is 3000 yen, the aforementioned reduction is larger than the difference. Therefore, the line usage rate is calculated so that the reduced amount matches the difference between the actual value and the upper limit (step 10b), and the line type and the line usage rate are notified to the line management unit 240.
- the line usage rate of lx # l of cdma2000 lx is set to 100_ (3000/6660 X 100) 54%.
- the total of the target upper limit values has a constant increase rate from the point A to the point B, whereas in the present embodiment, the communication per unit time depends on the boarding rate. The method of changing the cost increase is applied.
- FIG. 16 is a graph plotting the total 850 of the actual values of the communication costs and the total 860 of the target upper limit values in the case where the mobile network 100 moves to the point A and the point B.
- the occupancy rate between point A and point E is 100% and the occupancy rate between point E and point B is 50%
- the occupancy rate between point E and point B is 50%
- from point A to point E and from point E Up to point B use different increments for l.
- the mobile network 100 is used to determine the power occupancy rate, which is the switching of the overall operation policy. It is also possible to obtain in advance from the reservation status of the train in question, record it in the overall operation policy information 310, and switch at the timing when the occupancy rate changes (point E in this embodiment).
- the communication rate corresponding to the occupancy rate is determined in advance and described in the overall operation policy information 310, and the occupancy rate is updated in real time, and the operation is performed at the communication rate corresponding to the occupancy rate. Even good ,.
- the line selection unit was caused by the fact that the total 850 of the actual values exceeded the total 860 of the target upper limit values.
- the charging system is determined (step 4b). Since the line of lx # l of cdma2000 lx is packet-based charging (step 5b), the reduction per unit time due to the line disconnection in this line selection processing is calculated from the number of transmitted / received packets and the charging rate. (Step 6b). Here, the decrease per unit time is 6660 yen (0.0015 ⁇ / packet X (4200000 + 240000) packets) per unit time.
- the difference between the above-described decrease, the actual value of the increase in the communication charge per unit time, and the target upper limit of the increase in the communication charge per unit time is compared.
- the amount of reduction is 6660 yen (0.0015 yen / packet X (4200000 + 240000) packets), and the difference between the actual communication charge and the target upper limit is S19000 yen. small. Therefore, it requests the line manager 240 to disconnect the PPP link, and returns to the above-described search of the line type (step 8b).
- the lines whose status of the line quality information 500 is On are searched for in ascending order of the use priority of the line type of the policy information (step 2b).
- the UMTS usage priority level is 2 ", and since that UMTS # 1 is in use, the UMTS # 1 line is selected.
- the charging system is determined (step 4b). Since the UMTS # 1 line is charged by the packet (step 5b), the reduction per unit time due to the line disconnection in the current line selection process is calculated from the number of transmitted / received packets and the charging rate (step 6b). .
- the decrease per unit time is 14880 yen (0.002 ⁇ / packet X (6180000 + 1260000) packets).
- the difference between the actual communication charge and the target upper limit is 9000 yen, so the above-mentioned decrease is larger than the difference. Therefore, the line usage rate is calculated so that the reduced amount matches the difference between the actual value and the upper limit (step 10b), and the line type and the line usage rate are notified to the line management unit 240.
- the line usage rate of UMTS # 1 is set to 100- (12340/14880 ⁇ 100) 17%.
- the overall operation line policy is weighted according to the occupancy rate.
- the present invention is not limited to this, and weighting may be performed according to the current position of a train or the like.
- the location information is associated with the target value of the communication rate and the target upper limit of the communication fee
- the current location of the train is acquired by a location information acquisition system such as GPS, and the location information is used for correspondence. It may be configured to obtain the target value of the communication rate to be performed and the target upper limit of the communication fee.
- the process after obtaining the target value of the communication rate and the target upper limit of the communication fee is the same operation as that of the above-described embodiment and the like.
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Abstract
Description
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Priority Applications (3)
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US11/587,793 US20070237317A1 (en) | 2004-04-30 | 2005-03-22 | Communication Apparatus |
JP2006512732A JPWO2005107186A1 (ja) | 2004-04-30 | 2005-03-22 | 通信装置 |
EP05721266A EP1758314A1 (en) | 2004-04-30 | 2005-03-22 | Communication apparatus |
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JP2004135104 | 2004-04-30 | ||
JP2004-135104 | 2004-04-30 |
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PCT/JP2005/005166 WO2005107186A1 (ja) | 2004-04-30 | 2005-03-22 | 通信装置 |
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US (1) | US20070237317A1 (ja) |
EP (1) | EP1758314A1 (ja) |
JP (1) | JPWO2005107186A1 (ja) |
KR (1) | KR100855121B1 (ja) |
CN (1) | CN1951073A (ja) |
WO (1) | WO2005107186A1 (ja) |
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JP2008104026A (ja) * | 2006-10-19 | 2008-05-01 | Fujitsu Ltd | リングレット切替装置およびリングレット切替プログラム |
JP2011171821A (ja) * | 2010-02-16 | 2011-09-01 | Buffalo Inc | 通信装置、通信方法及びそのプログラム |
JP2012217027A (ja) * | 2011-03-31 | 2012-11-08 | Kochi Univ Of Technology | 課金システムとプログラム |
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JP4577531B2 (ja) * | 2008-10-28 | 2010-11-10 | 日本電気株式会社 | 認証サーバ、通信システム、接続装置割り当て方法およびプログラム |
US8514864B2 (en) * | 2009-03-31 | 2013-08-20 | Verizon Patent And Licensing Inc. | System and method for providing network mobility |
CN101938732A (zh) * | 2009-06-29 | 2011-01-05 | 华为技术有限公司 | 分组域业务消费的控制方法及其装置、系统 |
JP5516170B2 (ja) | 2010-07-14 | 2014-06-11 | ブラザー工業株式会社 | 通信装置及びコンピュータプログラム |
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Also Published As
Publication number | Publication date |
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CN1951073A (zh) | 2007-04-18 |
JPWO2005107186A1 (ja) | 2008-07-31 |
KR100855121B1 (ko) | 2008-08-28 |
US20070237317A1 (en) | 2007-10-11 |
EP1758314A1 (en) | 2007-02-28 |
KR20070007855A (ko) | 2007-01-16 |
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