JPS58145249A - Time division multiplex connecting system - Google Patents
Time division multiplex connecting systemInfo
- Publication number
- JPS58145249A JPS58145249A JP2709682A JP2709682A JPS58145249A JP S58145249 A JPS58145249 A JP S58145249A JP 2709682 A JP2709682 A JP 2709682A JP 2709682 A JP2709682 A JP 2709682A JP S58145249 A JPS58145249 A JP S58145249A
- Authority
- JP
- Japan
- Prior art keywords
- station
- time division
- burst
- clock frequency
- slave
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/14—Relay systems
- H04B7/15—Active relay systems
- H04B7/204—Multiple access
- H04B7/212—Time-division multiple access [TDMA]
- H04B7/2125—Synchronisation
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Time-Division Multiplex Systems (AREA)
- Radio Relay Systems (AREA)
Abstract
Description
【発明の詳細な説明】
〔発明の属する分野の説明〕
本発明は衛星通信方式に適する無線時分割通信方丈に関
する。特に、性能の異なる複数の送受信局相互間の通信
を可能とする時分割多元l#続(テDMム)方式に関す
るものである。DETAILED DESCRIPTION OF THE INVENTION [Description of the Field to which the Invention Pertains] The present invention relates to a wireless time division communication system suitable for satellite communication systems. In particular, it relates to a time division multiplex (DMM) system that enables communication between a plurality of transmitting and receiving stations with different performances.
第1図は従来例時分割多元II続方式の信号構成図であ
る。第1図(a)は141のフレームrの構成を示し、
1個のフレームFは同期制御バースト群日と、各種の時
間長のデータバースト群(D、〜Dn)とから構成され
る。第1図〜)はその部分拡大図で、G41jガードタ
イム、8アは同期情報信号、C0は制−信号、op#′
i萄助信号である。 また、Diiデータ信号である。FIG. 1 is a signal configuration diagram of a conventional time division multiplex II concatenation system. FIG. 1(a) shows the structure of 141 frames r,
One frame F is composed of a synchronous control burst group and data burst groups (D, to Dn) of various time lengths. Figures 1~) are partially enlarged views of the G41j guard time, 8A is the synchronization information signal, C0 is the control signal, and op#'
This is the i-suke signal. It is also a Dii data signal.
送受信号#i同期制−バースト8の同期情報信号By
1に検出して、搬送波同期、クロック同期およびフレー
ム−期をとり、制#色号CtKよってデータ信号り、〜
Dnのバースト割当てを行う。これKよ砂通信系を設定
して通信を行う。Transmission/reception signal #i synchronization - burst 8 synchronization information signal By
1, carrier synchronization, clock synchronization, and frame period are performed, and the data signal is output according to the color code CtK.
Perform burst allocation of Dn. Now set up the sand communication system and communicate with K.
第2図は衛星を中継局とする従来例時分−1多元接続方
式の通信形Ilを示す図である。lは中継局(lIJ星
)2.3は従局(地球局)f:示す。FIG. 2 is a diagram showing a communication type Il of a conventional hour-minute-1 multiple access system using a satellite as a relay station. l is a relay station (lIJ star) 2.3 is a slave station (earth station) f: indicates.
従来例方式では、第1図に示すように各バーストの伝送
速1ft;を同一の値fpであるため、各従局2%3で
は同一伝送速度の信号を送受信することの可能な同一性
能あるいはそれ以−Fの性能の装置を設ける必要がある
。かりに伝送容量が少なくてもよい局があっても、大規
模間の性能に合せた設備が必要となり不経済となる欠点
があった。In the conventional method, as shown in Fig. 1, each burst has the same transmission speed of 1 ft; fp, so each slave station has the same performance that can transmit and receive signals at the same transmission speed, or It is necessary to provide equipment with performance below -F. Even if there is a station that requires less transmission capacity, it has the drawback of requiring equipment that matches the performance of a large scale network, making it uneconomical.
本発明は伝送容量に応じて性能の異なる経済的な設備を
備えた局についても、時分割多元11続方式による一つ
の系に接続することができる方式を提供することを目的
とする。An object of the present invention is to provide a system in which even stations equipped with economical equipment whose performance differs depending on the transmission capacity can be connected to one system using a time division multiplex eleven concatenation system.
本発明は、フレームを構成する同期制御バーストおよび
データバーストの伝送速度全複数の異なる値に設定して
、送信局では相手受信局の性能に合う受信可能な伝送速
度で送信を行い、性能の異なる各横送受信設備を混在共
用させて相互間の通信を行うこと管特徴とする。The present invention sets the transmission speeds of synchronization control bursts and data bursts constituting a frame to a plurality of different values, so that the transmitting station transmits at a receivable transmission speed that matches the performance of the other receiving station. The main feature of this system is that each transverse transmission/reception facility is used in a mixed manner to communicate with each other.
第5図は本発明実施例方式の信号構成図である。 FIG. 5 is a signal configuration diagram of the system according to the embodiment of the present invention.
第5図(a) K示す縦破線の間隔は、通信クロックの
間隔を表わし、本発明の方式では1i1i1のフレーム
1の中に異なるクロック速度の信号が混在することを示
す。第5図の各符号は第1図で説明した従来例方式のも
のと同様である。The interval between the vertical broken lines shown in FIG. 5(a) K represents the interval between communication clocks, and indicates that in the method of the present invention, signals of different clock speeds coexist in frame 1 of 1i1i1. Each reference numeral in FIG. 5 is the same as that of the conventional system explained in FIG.
鎮4図は本発明実施例方式の通信形mを示す図である。Figure 4 is a diagram showing a communication type m according to an embodiment of the present invention.
この例ではクロック周波数はfpl、fPlおよびfp
iの3種類が設定され、その値はfp、〉fp2〉fP
l
である、最もクロック周波数の高いfp、については、
従局lOおよび13のみが送受可能であり、他局はこの
クロック周波数に対応する設備金持たない。In this example the clock frequencies are fpl, fPl and fp
Three types of i are set, and their values are fp, 〉fp2〉fP
For fp, which has the highest clock frequency,
Only slave stations 10 and 13 can transmit and receive, and other stations do not have the equipment to support this clock frequency.
クロック周波数fp2については、従局to、tiおよ
び13.14が送受可能である。クロック周波数fpi
については全ての従局lO〜15で送受可能である。Regarding clock frequency fp2, slave stations to, ti and 13.14 can transmit and receive. clock frequency fpi
can be transmitted and received by all slave stations 10 to 15.
このような構成では、例えば従局12および15は、り
a7り周波数の低いfpSKついてのみ送受信で
□きる設備を持てばよい。アンテナの口径の小さいもの
でよく、通信用の回路も低速tK対して所定の誤り率を
達成できる経済的な設備でよいことKなる。In such a configuration, for example, slave stations 12 and 15 can only transmit and receive fpSK, which has a low frequency.
□All you need to do is have the equipment to do so. The antenna may have a small diameter, and the communication circuit may be an economical equipment that can achieve a predetermined error rate at low speed tK.
衛星1の中継局設備は、受信信号を増幅して送信する形
態の装置である場合には、最高のクロック周波数fp、
に対応できる性能を備えていれば、それより低い周波数
fp2% fp、 Kついては、十分に余裕をもって中
継伝送全行うことができる。If the relay station equipment of satellite 1 is a device that amplifies and transmits the received signal, the highest clock frequency fp,
If it has the performance to correspond to the lower frequency fp2% fp, K, it is possible to perform all relay transmissions with sufficient margin.
中継局の設備が再生中継方式である場合には、上記各ク
ロック周波数’p1 、f p2 、t p、は互いに
整数倍の関係に設定することがよい。When the equipment of the relay station is a regenerative relay system, the clock frequencies 'p1, f p2, and t p are preferably set to be integral multiples of each other.
同期制御バースト群8のクロック周波数は、最低のクロ
ック周波数fpiによれば、各従局が共通にこれを受信
することができる。また回期制御ノ(−スト會各クロッ
ク周波数fp、 、fp、、fpsで各別に送信すると
とKしてもよい。If the clock frequency of the synchronous control burst group 8 is the lowest clock frequency fpi, each slave station can receive it in common. It is also possible to transmit the periodic control signal separately at each clock frequency fp, , fp, , fps.
上記例は、伝送速度の相違はクロック周波数が相違する
ものであるとしたが、この他K、クロック周波数は同一
あるいは別であっても、多値変調の変調レベルの多少に
よる場合、あるいは多相変調の変調相数が相違する場合
などによっても、本発明を実施することができる。In the above example, the difference in transmission speed is due to the difference in clock frequency, but in addition, even if the clock frequency is the same or different, it may be due to the modulation level of multi-level modulation, or the difference in multi-phase modulation. The present invention can be practiced even when the number of modulation phases of modulation is different.
以上説明したように、時分割多元接続方式のフレーム構
成のバーストが種々の伝送速度で構成されているため、
各従局は必要な通信容量に対応した規模あるいは性能の
設備を備えれば良く、従局設備の蔽済化を図ることがで
きる。本発明により種々の通信容量の従局または地球局
が相互に接続できることKなり通信系の柔軟性および多
様性を増す利点がある。As explained above, since bursts in the frame structure of the time division multiple access system are composed of various transmission speeds,
Each slave station only needs to be equipped with equipment of a size or performance that corresponds to the required communication capacity, and the slave station equipment can be shielded. The present invention allows slave stations or earth stations of various communication capacities to be interconnected, which has the advantage of increasing the flexibility and diversity of the communication system.
第1図は従来例の時分割多元接続方式のフレーム構成例
を示す図。
第2図は従来例の時分割多元接続による通信形at示す
図。
第S図は本発明実施例方式のフレーム構成図。
第4図は本発明実施例方式の通信形mt示す図。
特許出願人 日本電信電話公社
代理人 弁理士 井 出 直 孝FIG. 1 is a diagram showing an example of a frame structure of a conventional time division multiple access system. FIG. 2 is a diagram showing a conventional communication type AT using time division multiple access. FIG. S is a frame configuration diagram of an embodiment of the present invention. FIG. 4 is a diagram showing a communication type mt according to an embodiment of the present invention. Patent applicant: Nippon Telegraph and Telephone Public Corporation, patent attorney: Naotaka Ide
Claims (1)
構成され。 各従局はフレーム周期毎に到来するその局に割当てられ
た時間にバースト信号全送信し、上記中継局でこのバー
スト信号を中継して上記複数の従局相斤間に通信を行う
時分割多元接続方式において、 ト記バースト信号内のクロック速度が、そのバースト信
号の送信局および受信局により複数種の異なる伝送速度
であることを%徴とする時分割多元接続方式。(1) A wireless transmission path is configured between a plurality of slave stations and one relay station. A time division multiple access method in which each slave station transmits all burst signals at the time allocated to that station that arrives every frame period, and the relay station relays this burst signal to communicate between the multiple slave stations. A time division multiple access system characterized in that the clock speed in the burst signal has a plurality of different transmission speeds depending on the transmitting station and receiving station of the burst signal.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2709682A JPS58145249A (en) | 1982-02-22 | 1982-02-22 | Time division multiplex connecting system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2709682A JPS58145249A (en) | 1982-02-22 | 1982-02-22 | Time division multiplex connecting system |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS58145249A true JPS58145249A (en) | 1983-08-30 |
Family
ID=12211545
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP2709682A Pending JPS58145249A (en) | 1982-02-22 | 1982-02-22 | Time division multiplex connecting system |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS58145249A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH088954A (en) * | 1994-06-21 | 1996-01-12 | Nec Corp | Increase system for service capacity in point-multi-point optical transmission system |
-
1982
- 1982-02-22 JP JP2709682A patent/JPS58145249A/en active Pending
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH088954A (en) * | 1994-06-21 | 1996-01-12 | Nec Corp | Increase system for service capacity in point-multi-point optical transmission system |
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