JPH01293726A - Selective coding system in radio communication system - Google Patents

Selective coding system in radio communication system

Info

Publication number
JPH01293726A
JPH01293726A JP12463388A JP12463388A JPH01293726A JP H01293726 A JPH01293726 A JP H01293726A JP 12463388 A JP12463388 A JP 12463388A JP 12463388 A JP12463388 A JP 12463388A JP H01293726 A JPH01293726 A JP H01293726A
Authority
JP
Japan
Prior art keywords
signal
error
information
decoder
line
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
Application number
JP12463388A
Other languages
Japanese (ja)
Inventor
Takaaki Arima
敬聴 有馬
Junji Tada
順次 多田
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.)
Sharp Corp
Original Assignee
Sharp 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 Sharp Corp filed Critical Sharp Corp
Priority to JP12463388A priority Critical patent/JPH01293726A/en
Publication of JPH01293726A publication Critical patent/JPH01293726A/en
Pending legal-status Critical Current

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  • Detection And Prevention Of Errors In Transmission (AREA)

Abstract

PURPOSE:To effectively use a coding system and to improve the transmission efficiency of a data signal by transmitting and receiving data by judging error status in a line and selecting respective coding means and decoding means which are optimum for the line. CONSTITUTION:At a calling station, a transmitting system is actuated by the control of a control part 11, and a line status signal is transmitted from an antenna 1 through a coder 6 for correcting one error and a transmitting part 3 to a called station. At the called station, the line status signal is received at the antenna 1, and the received line status signal is taken through a receiver part 4 and a decoder 9 for correcting one error into the control part 11. the control part 11 judges the existence of an error in the corrected signal and transmits a switching information signal from the antenna 1 through the coder 6 and the transmitting part 3 to the calling station. The calling station control part 11 takes in the received signal, judges whether the information is detected information or corrected information, switches to the sides of a coder 7 for detecting one error and a one error decoder 8 when the information is the detected information, and switches to the sides of the coder 6 and the decoder 9 when the information is the corrected information.

Description

【発明の詳細な説明】 〈産業上の利用分野〉 この発明は、複数の発呼局及び被呼局からなる無線通信
システムにおける選択符号化方式の改良に関する。
DETAILED DESCRIPTION OF THE INVENTION <Field of Industrial Application> The present invention relates to an improvement of a selective coding method in a wireless communication system consisting of a plurality of calling stations and called stations.

く従来の技術〉 まず、従来の無線通信システムにおける選択符号化方式
を第4図により説明する。
Prior Art> First, a selective coding method in a conventional wireless communication system will be explained with reference to FIG.

第4図において、21は送受信用のアンテナ、22は送
信と受信の切り換え部、23は送信部、24は受信部、
25は符号器、26は徨号器、2フは制御部、Soはア
ンテナ切り換え制御信号である。
In FIG. 4, 21 is a transmitting and receiving antenna, 22 is a transmitting and receiving switching unit, 23 is a transmitting unit, 24 is a receiving unit,
25 is an encoder, 26 is an encoder, 2F is a control section, and So is an antenna switching control signal.

データ信号は、発呼局の符号器25によって冗長成分が
付加され、送信部23を経てアンテナ21がら伝送され
る。被呼局は、この信号をアンテナ21を通して受信部
24で受信し、さらに復号器26によって誤り訂正が施
されて冗長成分が取り除かれる。
A redundant component is added to the data signal by the encoder 25 of the calling station, and the data signal is transmitted through the antenna 21 via the transmitter 23. The called station receives this signal through the antenna 21 at the receiving section 24, and is further subjected to error correction by the decoder 26 to remove redundant components.

〈発明が解決しようとする課題〉 上記の従来方式では、例えば符号器で1誤り訂正用の符
号化を行うとすると、回線上の誤りがほとんど起きない
場合に誤り訂正用として付加した冗長成分が無駄になる
。また逆に、符号器の誤り訂正能力を越えた回線上の誤
りが起きた場合には、この誤りを訂正するために更にデ
ータ信号に冗長成分を付加して訂正能力を高める必要が
ある・このように、従来の固定型の符号化方式では冗長
成分に無駄や不足が生じて、回線状況による符号化方式
の有効利用が不十分になる可能性があり、符号の伝送効
率が低下するという問題があった。
<Problems to be Solved by the Invention> In the conventional method described above, for example, if the encoder performs coding for one-error correction, the redundant component added for error correction when almost no errors occur on the line. It will be wasted. Conversely, if an error occurs on the line that exceeds the error correction capability of the encoder, it is necessary to further increase the correction capability by adding redundant components to the data signal in order to correct this error. As mentioned above, in conventional fixed encoding systems, redundant components are wasted or insufficient, which may result in insufficient effective use of the encoding system depending on line conditions, and the problem is that the code transmission efficiency decreases. was there.

この発明はこのような問題点に着目し、符号化方式の有
効利用を計り、データ信号の伝送効率を向上することを
目的としてなされたものである。
The present invention has been made in view of these problems, with the aim of making effective use of the encoding method and improving the transmission efficiency of data signals.

〈課題を解決するための手段〉 上述の目的を達成するために、この発明では、データ信
号を送受信する前に最も訂正能力の高い符号化手段と復
号化手段を用いて回線状況信号を送受信し、この信号か
ら回線の誤り状況を判断して、検出能力及び訂正能力の
相異なる複数の符号化手段と復号化手段の中から通信路
に最も適合したものを選択してデータ信号の送受信を行
うようにしている。
<Means for Solving the Problems> In order to achieve the above object, the present invention transmits and receives line status signals using encoding means and decoding means with the highest correction ability before transmitting and receiving data signals. , determines the error status of the line from this signal, selects the one most suitable for the communication channel from among a plurality of encoding means and decoding means with different detection and correction abilities, and transmits and receives data signals. That's what I do.

く作用〉 回線状況信号の送受信状態から回線の誤り状況がある程
度予測され、この結果に応じて通信路に最も適合した符
号化手段と復号化手段が選択されるので、冗長成分の付
加が過不足なく行なわれる。
Function: The error status of the line is predicted to some extent from the transmission/reception status of the line status signal, and the encoding and decoding means most suited to the communication channel are selected according to this result, so it is possible to avoid adding too much or too little redundant component. It is done without.

〈実施例〉 次に図示の一実施例について説明する。<Example> Next, one embodiment shown in the drawings will be described.

第1図はこの発明の無線通信システムを構成する無線設
備のブロック図、第2図は動作手順を示した70−チャ
ート、第3図はタイムチャートである0図において、1
は送受信用のアンテナ、2は送信と受信を切り換えるア
ンテナ切り換え部、3は送信部、4は受信部、5は符号
器の辺り換え部、6は1誤り訂正用符号器、7は1誤り
検出用符号器、8は1誤り検出用復号器、9は1誤り訂
正用復号器、10は復号器の切り換え部、11は制御部
を示す、またSlはアンテナ切り換え制御信号、Slは
符号器切り換え制御信号、S、は復号器切り換え制御信
号、S、は回線状況信号、S、は切り換え情報信号、S
6はデータ信号である。以下、第2図及び第3図に従っ
て動作を説明する。
FIG. 1 is a block diagram of radio equipment constituting the wireless communication system of the present invention, FIG. 2 is a 70-chart showing the operating procedure, and FIG. 3 is a time chart.
is an antenna for transmitting and receiving, 2 is an antenna switching unit for switching between transmission and reception, 3 is a transmitting unit, 4 is a receiving unit, 5 is an encoder switching unit, 6 is an encoder for error correction, and 7 is an error detection unit. 8 is a decoder for error detection, 9 is a decoder for error correction, 10 is a decoder switching section, 11 is a control section, Sl is an antenna switching control signal, and Sl is an encoder switching The control signal, S, is a decoder switching control signal, S, is a line status signal, S is a switching information signal, S
6 is a data signal. The operation will be explained below according to FIGS. 2 and 3.

まず、発呼局の制御部11からのアンテナ切り換え制御
信号S、により、アンテナ切り換え部2が送信側に切り
換えられ、また符号器切り換え制御信号S2により、符
号器の切り換え部5が1誤り訂正用符号器6(11に切
り換えられる。これにより回線状況信号S、は1誤り訂
正用符号器6を経て送信WS3を通り、アンテナ1によ
って被呼局に送信される。
First, the antenna switching unit 2 is switched to the transmitting side by the antenna switching control signal S from the control unit 11 of the calling station, and the encoder switching unit 5 is switched to the transmitting side by the encoder switching control signal S2. The line status signal S is then switched to the encoder 6 (11).The line status signal S, passes through the encoder 6 for error correction, passes through the transmitter WS3, and is transmitted by the antenna 1 to the called station.

この信号S、は、被呼局のアンテナ1で受信され、制御
部11からのアンテナ切り換え制御信号S1゛(以下、
被呼局側の信号には°を付けて示す。)により受信部4
を通り、1誤り訂正用復号器9で訂正された回線状況信
号S、°となり、復号器切り換え制御信号S 3’によ
って制御部11に送り込まれる。制御部11ではこの訂
正された回線状況信号S4°について誤りの有無を判断
し、誤りが無ければ、復号器切り換え制御信号S 、 
lにより1誤り検出用復号器8に切り換えられ、誤りが
有れば1誤り訂正用復号器9の状態のままとなる。
This signal S, is received by the antenna 1 of the called station, and the antenna switching control signal S1' (hereinafter referred to as
Signals from the called station are shown with a ° mark. ) by the receiving section 4
The line status signal S,° is corrected by the 1-error correction decoder 9, and is sent to the control unit 11 by the decoder switching control signal S3'. The control unit 11 determines whether or not there is an error in this corrected line status signal S4°, and if there is no error, the decoder switching control signal S,
1, the decoder 8 is switched to the one error detection decoder 8, and if there is an error, it remains in the one error correction decoder 9.

この判断によってもたらされた切り換え情報信号S 、
lは、被呼局の符号器t7J’)換え制御信号S2゜に
よって1誤り訂正用符号器6に切り換えられ、この符号
器6を経て送信部3を通り、アンテナ1から発呼局に対
して送信される。そして受信された切り換え情報信号S
、は、発呼局のアンテナ切り換え制ill信号S、と復
号器切り換え制御信号Slにより、受信部4と1誤り訂
正用復号器9を経て制御部11に送り込まれる。ここで
、この切り換え情報信号S、により検出情報か訂正情報
がが′1′哩断され、検出情報であれば、符号器切り換
え制御信号S2と復号器切り換え制御信号S、により1
誤ワ検出用符号器7及び1誤り検出用復号58側に切り
換えられ、訂正情報であれば、1誤り訂正用符号器6及
V1誤り訂正用復号器9側に切り換えられる。
The switching information signal S brought about by this judgment,
l is switched to the 1 error correction encoder 6 by the encoder t7J') switching control signal S2 of the called station, passes through the encoder 6, passes through the transmitter 3, and is transmitted from the antenna 1 to the calling station. Sent. and the received switching information signal S
, is sent to the control unit 11 via the receiving unit 4 and the 1-error correction decoder 9 by the calling station's antenna switching control ill signal S and the decoder switching control signal Sl. Here, detection information or correction information is cut off by '1' by this switching information signal S, and if it is detection information, it is cut by '1' by encoder switching control signal S2 and decoder switching control signal S.
It is switched to the side of the encoder 7 for error detection and the decoder 58 for 1 error detection, and if it is correction information, it is switched to the side of the encoder 6 for 1 error correction and the decoder 9 for V1 error correction.

尚、第3図において、信号S1のLレベルは受信状態、
Hレベルは送信状態を、また信号S2及びS、のしレベ
ルは検出符号化適用、Hレベルは訂正符号化適用をそれ
ぞれ示す。
In addition, in FIG. 3, the L level of the signal S1 indicates the receiving state,
The H level indicates the transmission state, the signals S2 and S, the high level indicates the application of detection coding, and the H level indicates the application of correction coding.

このようにして、発呼局では、回線の誤り状況に応じて
1誤ワ訂正用符号器6が1誤り検出用符号器7のいずれ
か適切な方が選択されるのであり、データ信号S6は選
択された符号器6または7を経て送信されることになる
。またこれを受信した被呼局では、既に切り換えられて
いる1誤り検出用復号器8h・1誤り訂正用復号r59
のいずれかで信号が復号され、データ信号S、lが得ら
れるのである。
In this way, the calling station selects either the 1-error correcting encoder 6 or the 1-error detecting encoder 7 depending on the error status of the line, and the data signal S6 is It will be transmitted via the selected encoder 6 or 7. In addition, the called station which received this has already switched 1 error detection decoder 8h and 1 error correction decoder r59.
The signal is decoded using one of these methods, and data signals S and l are obtained.

尚、この発明での符号化手段及び復号化手段は、上記の
実施例のような1誤り訂正符号と1誤り検出符号に限定
されるものではない。
Note that the encoding means and decoding means in this invention are not limited to the one-error correction code and one-error detection code as in the above embodiments.

〈発明の効果〉 上述の実施例から明らかなように、この発明の無線通信
システムにおける選択符号化方式によれば、回線の誤り
の変動が比較的多い場合に、その時間と場所に適合した
符号化方式を選ぶことができる。従って、符号化による
冗長成分の最適配分が可能となり、従来の固定型の方式
のように冗長成分に無駄や不足が生ずることがなく、全
体としてデータの伝送効率を向上することができ、また
処理時間も短縮することが可能となるのである。
<Effects of the Invention> As is clear from the embodiments described above, according to the selective coding method in the wireless communication system of the present invention, when there are relatively many fluctuations in line errors, a code suitable for the time and place can be selected. You can choose the conversion method. Therefore, it is possible to optimally allocate redundant components through encoding, and there is no waste or shortage of redundant components unlike in conventional fixed-type systems, and overall data transmission efficiency can be improved. It also becomes possible to shorten the time.

【図面の簡単な説明】[Brief explanation of the drawing]

tjS1図は、この発明の一実施例の無線設備のブロッ
ク図、 第2図は、動作手順を示した70−チャート図、第3図
は、タイムチャート図、 @4図は、従来の無線設備のブロック図である。 3・・・送信部     、4・・・受信部5・・・符
号器の切り換え部 、 6・・・1誤り訂正用符号器 、 7・・・1:P、り検出用符号器 、 8・・・1誤り検出用復号器 、 9・・・1i!!%り訂正用復号器 、10・・・復号
器の切り換え部 、 11・・・制御部 %S2・・・符号4辺り換え制御信
号S、・・・復号器切り換え制ij信号 、S、・・・
回線状況信号 、S、・・・切り換え情報信号S、・・
・データ信号
tjS1 is a block diagram of radio equipment according to an embodiment of the present invention, Fig. 2 is a 70-chart showing the operating procedure, Fig. 3 is a time chart, and @4 is a diagram of conventional radio equipment. FIG. 3... Transmission section, 4... Receiving section 5... Encoder switching section, 6... 1 Error correction encoder, 7... 1: P, ri detection encoder, 8. ...1 error detection decoder, 9...1i! ! % error correction decoder, 10...Decoder switching unit, 11...Control unit %S2...Code 4 switching control signal S,...Decoder switching control ij signal, S,...・
Line status signal, S,...Switching information signal S,...
・Data signal

Claims (1)

【特許請求の範囲】[Claims] 1、制御手段、符号化手段、復号化手段及び送受信部を
備えた無線設備間の無線通信システムであって、検出能
力及び訂正能力の相異なる複数の符号化手段と復号化手
段、並びにこれらの各符号化手段と復号化手段を切り換
える切り換え部を備え、データ信号を送受信する前に最
も訂正能力の高い符号化手段と復号化手段を用いて回線
状況信号を送受信し、この信号から回線の誤り状況を判
断して、各符号化手段と復号化手段の中から通信路に最
も適合したものを選択してデータ信号の送受信を行うこ
とを特徴とする無線通信システムにおける選択符号化方
式。
1. A wireless communication system between radio equipment equipped with a control means, an encoding means, a decoding means, and a transmitting/receiving unit, including a plurality of encoding means and decoding means with different detection and correction abilities, and It is equipped with a switching unit that switches between each encoding means and decoding means, and before transmitting and receiving data signals, it transmits and receives a line status signal using the encoding means and decoding means with the highest correction ability, and detects errors in the line from this signal. A selective encoding method in a wireless communication system, characterized in that the situation is judged, and the one most suitable for the communication channel is selected from each encoding means and decoding means to transmit and receive data signals.
JP12463388A 1988-05-20 1988-05-20 Selective coding system in radio communication system Pending JPH01293726A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP12463388A JPH01293726A (en) 1988-05-20 1988-05-20 Selective coding system in radio communication system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP12463388A JPH01293726A (en) 1988-05-20 1988-05-20 Selective coding system in radio communication system

Publications (1)

Publication Number Publication Date
JPH01293726A true JPH01293726A (en) 1989-11-27

Family

ID=14890245

Family Applications (1)

Application Number Title Priority Date Filing Date
JP12463388A Pending JPH01293726A (en) 1988-05-20 1988-05-20 Selective coding system in radio communication system

Country Status (1)

Country Link
JP (1) JPH01293726A (en)

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