JPH0690195A - Satellite communication system - Google Patents

Satellite communication system

Info

Publication number
JPH0690195A
JPH0690195A JP13812292A JP13812292A JPH0690195A JP H0690195 A JPH0690195 A JP H0690195A JP 13812292 A JP13812292 A JP 13812292A JP 13812292 A JP13812292 A JP 13812292A JP H0690195 A JPH0690195 A JP H0690195A
Authority
JP
Japan
Prior art keywords
slave station
station
level
slave
data
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.)
Withdrawn
Application number
JP13812292A
Other languages
Japanese (ja)
Inventor
Masaki Nagato
正喜 長門
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NEC Corp
Original Assignee
NEC Corp
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by NEC Corp filed Critical NEC Corp
Priority to JP13812292A priority Critical patent/JPH0690195A/en
Publication of JPH0690195A publication Critical patent/JPH0690195A/en
Withdrawn legal-status Critical Current

Links

Abstract

PURPOSE:To prevent the communication fault of an in-band channel from occurring due to disturbance such as rainfall in a star-type satellite communication network by forming the star-type satellite communication network with a master station and plural slave stations, providing a transmission channel for notification to slave station resistant to the distrubance in the master station, and providing a small transmitter which can vary a transmission level in the slave station. CONSTITUTION:The master station 1 is equipped with a reception level measuring instrument 5 which monitors the reception level of the in-band channel from each slave station 3, and each slave station is equipped with a transmission level adjuster 10 which can freely adjust a transmission level. The master station monitors the reception level of the in-band channel from each slave station, and when the decrement(increment) of the reception level is recognized, the information of such decrement(increment) is notified to a corresponding slave station by using an out band, and the slave station corrects the transmission level based on the information.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は衛星通信方式に関し、特
にスター型ネットワークの衛星通信回線において、複数
の子局から親局へのデータの衝突等による通信障害の防
止をはかることができる衛星通信方式に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a satellite communication system, and particularly, in a satellite communication line of a star network, satellite communication capable of preventing communication failure due to data collision from a plurality of slave stations to a master station. Regarding the scheme.

【0002】[0002]

【従来の技術】従来、親局と複数の子局が通信を行うス
ター型ネットワークで、子局が割り当てられたインバン
ドチャネルにランダムアクセスして通信路を確保する衛
星通信方式においては、各子局からの送信データが衛星
回線上で衝突する可能性があるので、子局からの通信が
親局に届かなかった事を子局が感知した場合に、子局は
統計的な乱数で決められる時間を待った後に再送を試み
る方式をとっている。ここで各子局の送信レベルは常に
一定に固定されていた。
2. Description of the Related Art Conventionally, in a star type network in which a master station and a plurality of slave stations communicate with each other, in a satellite communication system in which a slave station randomly accesses an in-band channel allocated to secure a communication path, Since the transmission data from the station may collide on the satellite link, if the slave station detects that the communication from the slave station did not reach the master station, the slave station is determined by a statistical random number. It takes a method to try again after waiting for time. Here, the transmission level of each slave station was always fixed.

【0003】[0003]

【発明が解決しようとする課題】上述した従来の衛星通
信方式は、子局どうしの送信が衝突に起因する通信障害
に対して非常に有効な回避策となるが、降雨などによる
送受信レベルの低下による通信障害の場合には、送信レ
ベルを一定に固定しているので、なんら効果がないとい
う欠点があった。
The above-mentioned conventional satellite communication system is a very effective workaround against the communication failure caused by the collision between the slave stations, but the transmission / reception level is lowered due to rainfall or the like. In the case of a communication failure due to, the transmission level is fixed, so there is a drawback that there is no effect.

【0004】[0004]

【課題を解決するための手段】本発明の衛星通信方式
は、親局から複数の子局への通信が可能な放送用アウト
バウンドチャネルを有し、子局から親局への通信が可能
な多重アクセスインバウンドチャネルを有するスター型
の衛星通信方式において、親局が各支局のインバンドチ
ャネルのレベルを測定する手段と、受信したインバンド
チャネルのレベルが変化した時には、アウトバウンドを
用いて該当する支局にレベル情報を通知する手段とを有
し、該当する支局が前記レベル情報をうけてインバンド
チャネルの送信レベルを補正せる手段を有する。
The satellite communication system of the present invention has a broadcasting outbound channel capable of communicating from a master station to a plurality of slave stations, and a multiplex communication capable of communicating from the slave station to the master station. In a star-type satellite communication system with an access inbound channel, the master station measures the level of the in-band channel of each branch, and when the level of the received in-band channel changes, the outbound is used to reach the corresponding branch. Means for notifying the level information, and the corresponding branch office has means for correcting the transmission level of the in-band channel by receiving the level information.

【0005】[0005]

【実施例】次に、本発明について図面を参照して説明す
る。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Next, the present invention will be described with reference to the drawings.

【0006】図1は、本発明の一実施例の構成図であ
る。
FIG. 1 is a block diagram of an embodiment of the present invention.

【0007】図1において、1は一群の子局への通信が
可能な放送用チャネルを待つ親局、2は衛星、3は親局
への通信チャネルをランダムにアクセス可能な子局であ
る。親局1にはデータ受信機4、データ送信機7が備え
られ、子局3にはデータ受信器8,データ送信機11
か、備えられている。
In FIG. 1, reference numeral 1 is a master station waiting for a broadcasting channel capable of communicating with a group of slave stations, 2 is a satellite, and 3 is a slave station capable of randomly accessing a communication channel to the master station. The master station 1 is equipped with a data receiver 4 and a data transmitter 7, and the slave station 3 is equipped with a data receiver 8 and a data transmitter 11.
Or it is equipped.

【0008】次に本実施例の動作を説明する。親局1か
ら子局3へのアウトバンドは放送用チャネルを用いる事
により、又子局3から親局1への通信は、各子局がイン
バンォチャネルにランダムにアクセスすることによりそ
の通信を実現しているものとする。なお、図1において
子局は1つより示されていないが、実際にはスター型の
衛星通信ネットワークでは、1つの親局に対し複数の子
局が存在するものとする。子局から親局へのインバンド
チャネルはスロット単位のパケット通信であるが、ラン
ダムアクセス方式なので、子局のデータ同士の送信デー
タによる衝突が発生する可能性がある。その対策として
通信プロトコルでデータの消滅が検知された時には、各
子局は従来例で説明したように、統計的な乱数で決めら
れる時間の経過後にデータを再送する機能を備えてい
る。
Next, the operation of this embodiment will be described. The out-band from the master station 1 to the slave station 3 uses a broadcasting channel, and the communication from the slave station 3 to the master station 1 is performed by each slave station randomly accessing the inban channel. It has been realized. Although not shown in FIG. 1 as one slave station, in reality, in a star satellite communication network, it is assumed that a plurality of slave stations exist for one master station. The in-band channel from the slave station to the master station is packet communication in slot units, but since it is a random access method, there is a possibility of collision between transmission data of the slave station data. As a countermeasure, when the disappearance of data is detected by the communication protocol, each slave station has a function of retransmitting the data after a lapse of time determined by a statistical random number, as described in the conventional example.

【0009】図2の信号フォーマットは、親局1から子
局3への放送用アウトバンドチャネルのデータフォーマ
ットである。この信号フォーマットはパケットヘッダ2
0、パケットデータ21からなり、パケットヘッダ20
には任意の子局のアドレス23が書き込まれている。各
子局はこのアドレスにより自局宛のデータだけを取り込
み他局宛のデータは廃棄する。パケットデータ21には
外部地上形から純データ、又は親局1で受信された子局
3の受信レベル情報が入れられる。さらにパケットヘッ
ダ20には子局アドレス23とデータ識別フラグ22が
含まれ、この値により、後ろに続くパケットデータ21
が純データか受信レベル情報かの識別を行う。図1に示
すように、親局の受信レベル測定器5は各子局からのイ
ンバンドチャネルの受信レベルを監視するものであり、
アクセス単位であるスロット毎の測定が可能である。受
信レベル測定器5が任意の子局からの受信データに対す
る受信レベルの低下(又は増加)が見られた時には、降
雨などの気象条件の外乱により通信経路の特性が変化し
たものとし、レベルデータ作成器6において、受信レベ
ルをパケットデータとしたアウトバンドデータを作成し
該当する子局に送信する。該当する子局は、データ受信
器8で受信したアウトバンドデータをデータ判別器9で
自局宛かを判別すると同時に、識別フラグ22を用いて
受信データが純データかレベル情報かを識別する。パケ
ットデータが純データの場合には、地上系の外部装置に
転送する。パケットデータがレベル情報の場合には送信
レベル調整器10に通知し、そのレベル情報に基づき送
信レベルを増加(又は低下)させ、通信障害を未然に防
ぐ様動作する。
The signal format of FIG. 2 is a data format of an out-band channel for broadcasting from the master station 1 to the slave station 3. This signal format is packet header 2
0, packet data 21 and packet header 20
An address 23 of an arbitrary slave station is written in. Each slave station takes in only the data addressed to itself by this address and discards the data addressed to other stations. In the packet data 21, pure data from the external ground type or the reception level information of the slave station 3 received by the master station 1 is put. Further, the packet header 20 includes a slave station address 23 and a data identification flag 22. By this value, the packet data 21 following the packet data 21
Identifies whether it is pure data or reception level information. As shown in FIG. 1, the reception level measuring device 5 of the master station monitors the reception level of the in-band channel from each slave station.
It is possible to measure each slot which is an access unit. When the reception level measuring instrument 5 shows a decrease (or an increase) in the reception level for the received data from any slave station, it is assumed that the characteristics of the communication path have changed due to the disturbance of weather conditions such as rainfall, and the level data is created. The device 6 creates outband data with the reception level as packet data and transmits it to the corresponding slave station. The corresponding slave station determines whether the outband data received by the data receiver 8 is addressed to itself by the data discriminator 9 and, at the same time, uses the identification flag 22 to discriminate whether the received data is pure data or level information. If the packet data is pure data, it is transferred to an external device on the ground system. When the packet data is level information, the transmission level adjuster 10 is notified, the transmission level is increased (or decreased) based on the level information, and the communication failure is prevented.

【0010】[0010]

【発明の効果】以上説明したように本発明は、親局は降
雨などの外乱に強い放送用の送信チャネルを持ち、か
つ、各子局からのインバンドチャネルの受信を監視する
受信レベル測定器を備え、各子局は送信レベルを自在に
調節できる送信レベル調整器を備えているので、親局が
各子局からの受信レベルを測定し、その情報を子局に通
知し、子局がその情報より送信レベルを補正することに
より、降雨などの外乱によるインバンドチャネルの通信
障害を防ぐことができる効果がある。
As described above, according to the present invention, the master station has a transmission channel for broadcasting which is resistant to disturbances such as rainfall, and the reception level measuring device for monitoring the reception of the in-band channel from each slave station. Since each slave station has a transmission level adjuster that can freely adjust the transmission level, the master station measures the reception level from each slave station, notifies the slave station of the information, and the slave station By correcting the transmission level based on the information, it is possible to prevent the communication failure of the in-band channel due to the disturbance such as rainfall.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の一実施例の構成図である。FIG. 1 is a configuration diagram of an embodiment of the present invention.

【図2】本実施例のアウトバンデータのフォーマットで
ある。
FIG. 2 is a format of Outvan data according to the present embodiment.

【符号の説明】[Explanation of symbols]

1 親局 2 衛星 3 子局 4,8 データ受信器 5 受信レベル測定器 6 レベルデータ作成器 7,11 データ送信器 9 データ判別器 10 送信レベル調整器 1 master station 2 satellites 3 slave stations 4, 8 data receiver 5 reception level measuring device 6 level data generator 7, 11 data transmitter 9 data discriminator 10 transmission level adjuster

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 親局から複数の子局への通信が可能な放
送用アウトバウンドチャネルを有し、子局から親局への
通信が可能な多重アクセスインバウンドチャネルを有す
るスター型の衛星通信方式において、親局が各子局のイ
ンバウンドチャネルのレベルを測定する手段と、受信し
たインバウンドチャネルのレベルが変化した時には、ア
ウトバウンドを用いて該当する子局にレベル情報を通知
する手段とを有し、該当する子局が前記レベル情報をう
けてインバウンドチャネルの送信レベルを補正する手段
を有することを特徴とする衛星通信方式。
1. A star-type satellite communication system having a broadcast outbound channel capable of communicating from a master station to a plurality of slave stations and having a multiple access inbound channel capable of communicating from the slave station to the master station. , The master station has means for measuring the level of the inbound channel of each slave station, and means for notifying the corresponding slave station of the level information using the outbound when the level of the received inbound channel changes, A satellite communication system, wherein the slave station has means for correcting the transmission level of the inbound channel by receiving the level information.
JP13812292A 1992-05-29 1992-05-29 Satellite communication system Withdrawn JPH0690195A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP13812292A JPH0690195A (en) 1992-05-29 1992-05-29 Satellite communication system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13812292A JPH0690195A (en) 1992-05-29 1992-05-29 Satellite communication system

Publications (1)

Publication Number Publication Date
JPH0690195A true JPH0690195A (en) 1994-03-29

Family

ID=15214486

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13812292A Withdrawn JPH0690195A (en) 1992-05-29 1992-05-29 Satellite communication system

Country Status (1)

Country Link
JP (1) JPH0690195A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5960005A (en) * 1995-12-25 1999-09-28 Fujitsu Limited Method and device for two-way communication network

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5960005A (en) * 1995-12-25 1999-09-28 Fujitsu Limited Method and device for two-way communication network

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Legal Events

Date Code Title Description
A300 Withdrawal of application because of no request for examination

Free format text: JAPANESE INTERMEDIATE CODE: A300

Effective date: 19990803