JPS61198936A - Control signal transmission system for catv optical transmission system - Google Patents

Control signal transmission system for catv optical transmission system

Info

Publication number
JPS61198936A
JPS61198936A JP60039310A JP3931085A JPS61198936A JP S61198936 A JPS61198936 A JP S61198936A JP 60039310 A JP60039310 A JP 60039310A JP 3931085 A JP3931085 A JP 3931085A JP S61198936 A JPS61198936 A JP S61198936A
Authority
JP
Japan
Prior art keywords
control signal
optical
subscriber
star coupler
transmission system
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
JP60039310A
Other languages
Japanese (ja)
Inventor
Yoichi Ogura
洋一 小倉
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.)
Toshiba Corp
Original Assignee
Toshiba 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 Toshiba Corp filed Critical Toshiba Corp
Priority to JP60039310A priority Critical patent/JPS61198936A/en
Publication of JPS61198936A publication Critical patent/JPS61198936A/en
Pending legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/27Arrangements for networking
    • H04B10/272Star-type networks or tree-type networks

Landscapes

  • Engineering & Computer Science (AREA)
  • Computing Systems (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)
  • Optical Communication System (AREA)

Abstract

PURPOSE:To reduce number of transceivers of a center device by connecting respectively a control signal transmitter and a control signal receiver in common to each subscriber to a couple of transmission/reception terminals of an optical star coupler. CONSTITUTION:The control signal transmitter 14 and the control signal receiver 15 in common to subscriber devices B1-Bn are connected respectively to a couple of transmission/reception terminals of the optical star coupler 18 provided to a control signal transmission/reception system of the center device D. Then an outgoing control signal sent from the center device D to the subscriber devices B1-Bn is transmitted from the control signal transmitter 14 to the optical start coupler 18. Further, an incoming control signal coming from the subscriber devices B1-Bn is led to the control signal receiver 15 for reception through the optical star coupler 18.

Description

【発明の詳細な説明】 〔発明の技術分野〕 本発明は、CATV光伝送システムの制御信号伝送方式
の改良に関する。
DETAILED DESCRIPTION OF THE INVENTION [Technical Field of the Invention] The present invention relates to an improvement in a control signal transmission method for a CATV optical transmission system.

〔発明の技術的背景〕[Technical background of the invention]

近年、情報通信システムの一つとして、放送テレビジョ
ン信号や各種サービス情報を光伝送路を用いて複数の加
入者の受像機に分配する、いわゆる有線テレビジョン(
CATV)光伝送システムが開発されている。第2図は
その構成の一例を示すもので、へはセンタ¥l装置、8
1〜Bnは槽数の加入者装置、C1〜Cnは光伝送路と
しての光ケーブルをそれぞれ示している。
In recent years, as one type of information communication system, so-called cable television (Cable TV), which distributes broadcast television signals and various service information to multiple subscriber receivers using optical transmission lines, has become popular.
CATV) optical transmission systems are being developed. Figure 2 shows an example of its configuration.
1 to Bn indicate subscriber devices corresponding to the number of tanks, and C1 to Cn indicate optical cables as optical transmission lines, respectively.

センタ装置Aは、複数の放送チャネルから各加入者毎に
希望するチャネルを選択する切換回路11と、制御回路
12とを有している。この制御回路12は、上記切換回
路11に対するチャネルの切換指示を行なうとともに、
各加入者装置81〜Bnとの間で各種制御信号の授受を
行なって例えばチャネルの切換要求や加入者の監視情報
を確認するものである。またセンタ装置Aは各加入者装
置81〜3n毎に、上記切換回路11により選択された
チャネルの映像音声信号を光信号に変換する光送信器1
31〜13nと、上記制御回路12から発生された下り
制御信号を光信号に変換する光送信器141〜14nと
、各加入者装置81〜Bnから到来した上り制御信号を
光電変換する光受信器151〜15nと、これら制(社
)信号伝送用の光送信器141〜14nおよび光受信器
151〜15nと制御回路12との間でこの制御回路1
2の制御によりバスを介して制御信号の伝達を行なうイ
ンタフェース回路(I/F)161〜16nと、光合分
波器171〜17nとをそれぞれ設けている。この光合
分波器171〜17nは、上記光送信器131〜13n
、141〜14nから出力された光信号と加入者装置8
1〜3nから送信される光信号とを双方向光波長多重す
るものである。
The center device A includes a switching circuit 11 for selecting a desired channel for each subscriber from a plurality of broadcast channels, and a control circuit 12. This control circuit 12 instructs the switching circuit 11 to switch channels, and
It exchanges various control signals with each subscriber device 81 to Bn to confirm, for example, a channel switching request and subscriber monitoring information. The center device A also includes an optical transmitter 1 for each subscriber device 81 to 3n, which converts the video and audio signal of the channel selected by the switching circuit 11 into an optical signal.
31 to 13n, optical transmitters 141 to 14n that convert downlink control signals generated from the control circuit 12 into optical signals, and optical receivers that photoelectrically convert uplink control signals arriving from each subscriber device 81 to Bn. The control circuit 1
Interface circuits (I/F) 161 to 16n and optical multiplexer/demultiplexers 171 to 17n are provided, respectively, for transmitting control signals via a bus under the control of No. 2. The optical multiplexer/demultiplexer 171-17n is connected to the optical transmitter 131-13n.
, 141 to 14n and the subscriber equipment 8
It performs bidirectional optical wavelength multiplexing on the optical signals transmitted from 1 to 3n.

一方加入者@[B1−13nは、それぞれ光合分波器2
1と、この光合分波器21で分波された前記センタ装置
Aからの映像音声信号を光電変換する光受信器22と、
この光受信器22により得られた映像音声信号を画像表
示および音声として出力するテレビジョン受[126と
、センタ装置1fAから到来した下り制御信号を光電変
換する光受信器23と、制御信号の送受信を行なう端末
回路27と、この端末回路27と上記制御信号伝送用の
光受信器23および光送信器24との間の信号の伝達を
行なうインタフェース回路25とから構成されている。
On the other hand, subscribers @[B1-13n are each optical multiplexer/demultiplexer 2
1, an optical receiver 22 that photoelectrically converts the video and audio signals from the center device A that have been demultiplexed by the optical multiplexer/demultiplexer 21;
A television receiver [126] that outputs the video and audio signals obtained by the optical receiver 22 as images and sounds, and an optical receiver 23 that photoelectrically converts the downlink control signal received from the center device 1fA, transmits and receives control signals. The terminal circuit 27 includes a terminal circuit 27, and an interface circuit 25, which transmits signals between the terminal circuit 27 and the optical receiver 23 and optical transmitter 24 for transmitting control signals.

この様な構成において、例えば加入者装置B1で加入者
が放送チャネルを指定すると、端末回路27から制御信
号が発せられてこの制御信号が光送信器24で光信号に
変換されたのち光合分波器21から光ケーブルC1に送
信される。これに対しセンタ装!fAは、上記制御信号
を光合分波器171で分波して光受信器151で光電変
換し、しかるのちインタフェース回路161を介して制
御回路12に導入する。そしてこの制t11回路12で
上記制御信号から加入者が希望する放送チャネルを判断
し、この判断結果にしたがって切換回路11を切換制御
してこれにより上記希望した放送チャネルを光送信器1
31に接続する。この結果、上記放送チャネルの映像音
声信号が光送信器131で光信号に変換されたのち光合
分波器171に導かれ、制御回路12から出力された下
り制御信号と光合分波器171で合波されたのち、光ケ
ーブルC1を介して加入者装置B1に送信される。
In such a configuration, for example, when a subscriber specifies a broadcast channel on the subscriber device B1, a control signal is emitted from the terminal circuit 27, and this control signal is converted into an optical signal by the optical transmitter 24, and then optically multiplexed and demultiplexed. 21 to the optical cable C1. On the other hand, center mounting! In fA, the control signal is demultiplexed by an optical multiplexer/demultiplexer 171, photoelectrically converted by an optical receiver 151, and then introduced into the control circuit 12 via an interface circuit 161. The control t11 circuit 12 determines the broadcast channel desired by the subscriber from the control signal, and controls the switching circuit 11 to switch according to the result of this determination, thereby switching the desired broadcast channel to the optical transmitter 1.
Connect to 31. As a result, the video/audio signal of the broadcasting channel is converted into an optical signal by the optical transmitter 131 and then guided to the optical multiplexer/demultiplexer 171, where it is combined with the downlink control signal output from the control circuit 12. After being waved, it is transmitted to subscriber equipment B1 via optical cable C1.

これにより加入者装置B1では、上記映像音声信号が光
受信器22により光電されてテレビジョン受像機26で
映像および音声として出力される。
As a result, in the subscriber device B1, the video and audio signals are photoelectrically converted by the optical receiver 22 and outputted as video and audio by the television receiver 26.

一方上記映像音声信号と同時に到来した下り制御信号は
、光合分波器21で分波されたのち光受信器23により
光電変換されて端末装置27に導かれ、この結果例えば
加入者装置181の動作状態の制御が行なわれる。
On the other hand, the downlink control signal that arrives at the same time as the video/audio signal is demultiplexed by the optical multiplexer/demultiplexer 21, photoelectrically converted by the optical receiver 23, and guided to the terminal device 27. As a result, for example, the subscriber device 181 operates. State control is performed.

同様に、他の加入者装置82〜Bnについても、制御信
号の授受を行なうことによりセンタ装置△から各別に映
像音声信号の供給が受けられる。またこのシステムは、
光合分波器を用いて映像音声信号および上り下りの各制
御信号を合分波することにより伝送を行なっているので
、各加入者装置毎に光ケーブルを1本設ければよく、こ
の結果各信号毎にケーブルを設ける場合に比べて伝送路
の構成を簡単化できる利点がある。
Similarly, other subscriber devices 82 to Bn can each receive video and audio signals from the center device Δ by exchanging control signals. Also, this system
Since transmission is performed by multiplexing and demultiplexing the video and audio signals and up and down control signals using an optical multiplexer/demultiplexer, it is only necessary to install one optical cable for each subscriber device, and as a result, each signal This has the advantage that the configuration of the transmission path can be simplified compared to the case where a cable is provided for each transmission line.

〔背景技術の問題点〕[Problems with background technology]

ところがこの様な従来のシステムは、センタ装置fAに
各加入者装置81〜Bn毎に制御信号用の光送受信器1
41〜14n、151〜15nを設けてそれぞれ制御信
号の授受を行なっているため、センタ装置の構成が複雑
で大形化し易く、加入者の増設に容易に対応することが
できなかった。
However, in such a conventional system, the optical transceiver 1 for control signals is installed in the center device fA for each subscriber device 81 to Bn.
Since 41 to 14n and 151 to 15n are provided to send and receive control signals, the structure of the center device is complicated and tends to increase in size, and it is not possible to easily accommodate an increase in the number of subscribers.

〔発明の目的〕[Purpose of the invention]

本発明は、センタ装置の制御信号送受信器を各加入者に
対し共通として送受信器の数を低減し、これによりセン
タ装置の構成を簡単化および小形化して信頼性の向上を
図り、かつ加入者装置の増設にも容易に対応し得るCA
TV光伝送システムの制御信号伝送方式を提供すること
を目的とする。
The present invention reduces the number of transmitters and receivers by making the control signal transmitter/receiver of the center device common to each subscriber, thereby simplifying and downsizing the configuration of the center device and improving reliability. CA that can easily accommodate expansion of equipment
The object of the present invention is to provide a control signal transmission method for a TV optical transmission system.

〔発明の概要〕[Summary of the invention]

本発明は、上記目的を達成するために、センタ装置の制
御信号送受信系に光スターカプラを設けるとともに、こ
の光スターカプラの一対の送受信端にそれぞれ各加入者
に対し共通の制御信号送信器および1i11111信号
受信器を接続し、センタ装置から各加入者装置へ送信す
る下り制御信号を上記制御信号送信器から光スターカプ
ラを介して各加入者装置へ送信し、かつ各加入者装置か
ら到来する上り制御信号を上記光スターカプラによりそ
れぞれ制御信号受信器に導入し受信するようにしたもの
である。
In order to achieve the above object, the present invention provides an optical star coupler in the control signal transmission/reception system of the center equipment, and a common control signal transmitter and a common control signal transmitter for each subscriber at a pair of transmitting/receiving ends of the optical star coupler. 1i11111 signal receiver is connected, and a downlink control signal to be transmitted from the center device to each subscriber device is transmitted from the control signal transmitter to each subscriber device via an optical star coupler, and is received from each subscriber device. Uplink control signals are introduced into and received by the control signal receivers by the optical star couplers.

〔発明の実施例〕[Embodiments of the invention]

第1図は、本発明の一実施例における制御信号伝送方式
を適用した0ATV光伝送システムの構成を示すもので
ある。尚、同図において前記第2図と同一部分には同一
符号を付して詳しい説明は省略する。
FIG. 1 shows the configuration of an 0ATV optical transmission system to which a control signal transmission method according to an embodiment of the present invention is applied. In this figure, the same parts as in FIG. 2 are given the same reference numerals and detailed explanations will be omitted.

センタ装置りの制御信号送受信系には、光スターカプラ
18が設けである。この光スターカプラ18は、各加入
者装置81〜Bnに対応する光ファイバからなるn対の
入出力端子と制御回路12に対応する光ファイバからな
る一対の入出力端子とを備えたもので、上記n対の入出
力端子はそれぞれ各加入者装置81〜Bnmに設けられ
た光合分波器171〜17nに接続され、また制御回路
12に対応する一対の入出力端子には光送信器14およ
び光受信器15がそれぞれ接続されている。そしてこの
光スターカプラ18は、各入力端子に導入された光制御
信号をそれぞれ全出力端子に等分に分配して出力する。
An optical star coupler 18 is provided in the control signal transmission/reception system of the center device. This optical star coupler 18 is equipped with n pairs of input/output terminals made of optical fibers corresponding to each subscriber device 81 to Bn and a pair of input/output terminals made of optical fibers corresponding to the control circuit 12. The n pairs of input/output terminals are connected to optical multiplexer/demultiplexers 171 to 17n provided in each subscriber device 81 to Bnm, respectively, and the pair of input/output terminals corresponding to the control circuit 12 are connected to the optical transmitter 14 and Optical receivers 15 are connected to each. The optical star coupler 18 equally distributes the optical control signal introduced into each input terminal to all output terminals and outputs the same.

尚、上記光スターカプラ18と光受信器15との間には
分波フィルタ19が介挿してあり、この分波フィルタ1
9により制御回路12から送信された下り制御信号が光
スターカプラ18および光受信器15を介して制御回路
12にそのまま帰還されないようにしている。また本シ
ステムは、センタ装MAの制御回路12により全加入者
装置81〜3nに対する制御信号の授受を行なっている
ため、各加入者装置81〜Bn間で何等かの信号の区別
を行なわなければならないが、本システムでは制御信号
の伝送速度が数1Qkbps程度とそれほど速くない点
に着目して、下り制御信号および上り制御信号の伝送形
態を第3図に示す如くそれぞれフレーム構成とし、この
フレームの各チャネルCH1〜CHnに各加入者装置B
1〜Bnをそれぞれ割当てることにより時分割で制御信
号の送受信を行なうようにしている。
A branching filter 19 is inserted between the optical star coupler 18 and the optical receiver 15, and this branching filter 1
9 prevents the downlink control signal transmitted from the control circuit 12 from being fed back directly to the control circuit 12 via the optical star coupler 18 and the optical receiver 15. In addition, in this system, since the control circuit 12 of the center equipment MA sends and receives control signals to and from all subscriber devices 81 to 3n, some kind of signal distinction must be made between each subscriber device 81 to Bn. However, in this system, paying attention to the fact that the transmission speed of control signals is not so fast at about several Qkbps, the transmission form of downlink control signals and uplink control signals is each configured as a frame as shown in Figure 3. Each subscriber device B is connected to each channel CH1 to CHn.
By allocating 1 to Bn, respectively, control signals are transmitted and received in a time-division manner.

この様な構成であるから、センタ装置りの制御回路12
から前記第3図に示すフレーム構成に従って時分割で送
出された各加入者装置81〜Bnへの下り制御信号は、
光送信器14でそれぞれ光信号に変換されたのち光スタ
ーカプラ18で各加入者装置81〜Bnに対応する全光
合分波器171〜17nにそれぞれ分配される。そして
この光合分波器171〜17nで各光送信器131〜1
3nから出力された映像音声信号と合成されたのち光ケ
ーブル01〜Cnに送出される。これに対し各”加入者
袋fllB1〜8nは、上記光ケーブルC1〜Cnを経
て到来する制御信号を光合分波器21で映像音声信号と
分波したのち光受信器23で光電変換し、その出力信号
をインタフェース回路25を介して端末回路27に導入
する。このとき、上記インタフェース回路25は伝送さ
れるフレーム中の自己が割当てられたチャネルの受信期
間のみゲート開成状態となる。このため、端末回路27
には自己への下り制御信号のみが供給される。一方上記
制御信号と同時に送られた映像音声信号は光合分波器2
1で分波されたのち光受信器22で光電変換され、テレ
ビジョン受像機26で映像および音声として出力される
With such a configuration, the control circuit 12 of the center device
The downlink control signal sent to each subscriber device 81 to Bn in a time-division manner according to the frame structure shown in FIG. 3 is as follows:
After being converted into optical signals by the optical transmitter 14, the signals are distributed by the optical star coupler 18 to all-optical multiplexers/demultiplexers 171-17n corresponding to the subscriber devices 81-Bn, respectively. Each optical transmitter 131 to 1 is connected to the optical multiplexer/demultiplexer 171 to 17n.
After being combined with the video/audio signal output from 3n, it is sent to optical cables 01 to Cn. On the other hand, each subscriber bag fllB1 to 8n demultiplexes the control signal arriving via the optical cables C1 to Cn into a video and audio signal by an optical multiplexer/demultiplexer 21, photoelectrically converts it by an optical receiver 23, and outputs the signal. The signal is introduced into the terminal circuit 27 via the interface circuit 25. At this time, the interface circuit 25 is in the gate open state only during the receiving period of the channel to which it is assigned in the transmitted frame. 27
is supplied with only the downlink control signal to itself. On the other hand, the video/audio signal sent simultaneously with the above control signal is sent to the optical multiplexer/demultiplexer 2.
After being demultiplexed by the optical receiver 22, the signal is demultiplexed by the optical receiver 22, and outputted as video and audio by the television receiver 26.

尚、上記センタtilDから各加入者装置81〜Bnへ
制御信号を送出する場合、制御信号を光スターカプラ1
8で分配するようにしたことにより、光ケーブルC1〜
Cnへ送出される制御信号のレベルは映像音声信号に比
べて減少するが、先にも述べたようにCATV光伝送シ
ステムの場合制御信号には高速性は要求されず、制御信
号の光伝送系における送受開信号レベル差は映像音声信
号に比べて大きく設定できるので、光スターカプラ18
の分配による制御信号のレベル低下はシステムを構成す
る上で何等問題とはならない。
Incidentally, when transmitting a control signal from the center tilD to each subscriber device 81 to Bn, the control signal is sent to the optical star coupler 1.
By distributing the optical cable C1 to
The level of the control signal sent to Cn is lower than that of the video/audio signal, but as mentioned earlier, in the CATV optical transmission system, the control signal does not require high speed, and the optical transmission system of the control signal Since the level difference between the transmission and reception signals can be set larger than that of the video and audio signals, the optical star coupler 18
The reduction in the level of the control signal due to the distribution of the signals does not pose any problem in configuring the system.

一方、加入者装置81〜Bnの端末回路27は、それぞ
れ伝送フレーム中の自己が割当てられたチャネルの送信
期間のみ動作状態となって、この期間に放送チャネル選
択信号等の上り制御信号を挿入して光送信器24で光信
号に変換し、光合分波器21から光ケーブル01〜Cn
へ送信する。そうすると、センタ装置りは光ケーブルC
1〜Cnを介して到来する上り制御信号を光合分波器1
71〜17nを経て光スターカプラ18に導入する。こ
の結果上記上り糾御信号は、光スターカプラ18により
全出力端子にそれぞれ分配され、そのうちの制御回路1
2に対応する出力端子に分配されたものが光受信器15
で光電変換されたのちインタフェース回路16を介して
制御回路12に導入される。尚、このとき上記光スター
カプラ18では上り制御信号が制御回路12に対応する
出力端子ばかりでなく各光合分波器171〜17nへも
分配されるため、同時に制御回路12から下り制御信号
が出力された場合はこの下り制御信号と上記分配された
制御信号とが輻幀することになるが、下りおよび上りの
各制御信号は波長が異ならせであるので、上記輻幀は発
生しない。
On the other hand, the terminal circuits 27 of the subscriber devices 81 to Bn are in an operating state only during the transmission period of the channel to which they are assigned in the transmission frame, and insert uplink control signals such as broadcast channel selection signals during this period. is converted into an optical signal by an optical transmitter 24, and sent from an optical multiplexer/demultiplexer 21 to an optical cable 01 to Cn.
Send to. Then, the center device is connected to the optical cable C.
1 to Cn, the optical multiplexer/demultiplexer 1
It is introduced into the optical star coupler 18 via 71 to 17n. As a result, the above-mentioned upstream control signal is distributed to all output terminals by the optical star coupler 18, and among them, the control circuit 1
The optical receiver 15 is distributed to the output terminal corresponding to 2.
After being subjected to photoelectric conversion, the signal is introduced into the control circuit 12 via the interface circuit 16. At this time, in the optical star coupler 18, the upstream control signal is distributed not only to the output terminal corresponding to the control circuit 12 but also to each of the optical multiplexers/demultiplexers 171 to 17n, so that the downstream control signal is output from the control circuit 12 at the same time. If this is the case, this downlink control signal and the distributed control signal will converge, but since the downlink and upstream control signals have different wavelengths, the convergence will not occur.

このように本実施例であれば、センタ装置りの制御信号
送受信系に光スターカプラ18を設け、この光スターカ
プラ18により制御回路12がら出力された下り制御信
号を各光合分波器171〜17nに分配するとともに、
各加入者装置81〜Bnから到来した上り制御信号をそ
れぞれ東金させて制御回路12に導入するようにしたこ
とによって、制御信号送信用の光送信器および光受信器
がそれぞれ1個のみでよいことになり、この結果加入者
装置81〜13nの分だけ設けなければならなかった従
来の1Illt[l信号伝送方式に比べて、センタ装置
の構成を大幅に簡単化および小形化することができる。
In this embodiment, the optical star coupler 18 is provided in the control signal transmission/reception system of the center device, and the optical star coupler 18 transmits the downlink control signal outputted from the control circuit 12 to each optical multiplexer/demultiplexer 171 to Along with distributing to 17n,
Since the uplink control signals arriving from each subscriber device 81 to Bn are sent to the respective terminals and introduced into the control circuit 12, only one optical transmitter and one optical receiver are required for transmitting the control signals. As a result, the configuration of the center device can be significantly simplified and downsized compared to the conventional 1Illt[l signal transmission system, which requires provision for each subscriber device 81 to 13n.

また加入者の増設時には、新たに光送信器や光受信器、
インタフェース回路を増設する必要がなく、光スターカ
プラ18を入出力端子数の多いものに交換するか、また
は予め端子数の多い光スターカプラを設けておいてその
余剰端子に増設分の光合分波器を接続するたけでよいの
で、上記装置構成の小形化を図れることと相まって極め
て容易に対応することができる。
Also, when adding more subscribers, new optical transmitters, optical receivers,
There is no need to add an interface circuit, and the optical star coupler 18 can be replaced with one with more input/output terminals, or an optical star coupler with more terminals can be installed in advance and the extra terminals can be used to combine and demultiplex the additional optical fibers. Since it is only necessary to connect the devices, it is possible to cope with the problem extremely easily, in combination with the ability to reduce the size of the device configuration described above.

尚1本発明は上記実施例に限定されるものではなく、例
えば制御信号の多重化方式(例えば下り上りの各制御信
号は波長だしゆうする以外に時分割だしゆうするように
してもよい)や光スターカプラの入出力端子の数、制御
信号と映像音声信号との合波方式などについても、本発
明の要旨を逸脱しない範囲で種々変形して実施できる。
Note that the present invention is not limited to the above-mentioned embodiments, and may be modified, for example, by a multiplexing method for control signals (for example, each downlink and uplink control signal may be time-divided and sent instead of being sent by wavelength), The number of input/output terminals of the optical star coupler, the method of combining the control signal and the video/audio signal, etc. can be modified in various ways without departing from the spirit of the present invention.

(発明の効果) 以上詳述したように本発明によれば、センタ装置の制御
信号送受信系に光スターカプラを設けるとともに、この
光スターカプラの一対の送受信端にそれぞれ各加入者に
対し共通の1IJ1[1信号送信器および制御信号受信
器を接続し、センタ装置から各加入者装置へ送信する下
り制御信号を上記制御信号送信器から光スターカプラを
介して各加入者装置へ送信し、かつ各加入者装置から到
来する上り制御信号を上記光スターカプラによりそれぞ
れ制御信号受信3に導入し受信するようにしたことによ
って、センタ装置の制御信号送受信器を各加入者に対し
共通にすることができ、これにより送受信器の数を低減
し得てセンタ装置の構成を簡単かつ小形化して信頼性の
向上を図り、かつ加入者装置の増設にも容易に対応し得
るCATV光伝送システムの制御信号伝送方式を提供す
ることができる。
(Effects of the Invention) As detailed above, according to the present invention, an optical star coupler is provided in the control signal transmission/reception system of the center device, and a common signal for each subscriber is provided at the pair of transmission/reception ends of the optical star coupler. 1IJ1 [1 A signal transmitter and a control signal receiver are connected, and a downlink control signal to be transmitted from the center device to each subscriber device is transmitted from the control signal transmitter to each subscriber device via an optical star coupler, and By introducing and receiving uplink control signals arriving from each subscriber device into the control signal receiver 3 using the optical star coupler, the control signal transmitter/receiver of the center device can be shared by each subscriber. A control signal for a CATV optical transmission system that can reduce the number of transmitters and receivers, simplify and downsize the structure of the center equipment, improve reliability, and easily accommodate the addition of subscriber equipment. A transmission method can be provided.

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

第1図は本発明の一実施例における制御信号伝送方式を
適用したCATV光伝送システムの構成を示す回路ブロ
ック図、第2因は従来の制御信号伝送方式を適用したC
ATV光伝送システムの構成を示す回路ブロック図、第
3図は制御信号の伝送フレームの構成を示す模式図であ
る。 D・・・センタ装置、81〜Bn・・・加入者装置、C
1〜Cn・・・光ケーブル、11・・・切換回路、12
・・・ill 1回路、131〜13n・・・映像音声
信号送信用の光送信器、14.24・・・制御信号送信
用の光送信器、15.23・・・制御信号受信用の光受
信器、16.25・・・インタフェース回路、171〜
17n、21・・・光合分波器、18・・・光スターカ
プラ、22・・・映像音声信号受信用の光受信器、26
・・・テレビジョン受IL27・・・端末回路。
FIG. 1 is a circuit block diagram showing the configuration of a CATV optical transmission system to which a control signal transmission method according to an embodiment of the present invention is applied.
FIG. 3 is a circuit block diagram showing the configuration of the ATV optical transmission system. FIG. 3 is a schematic diagram showing the configuration of a control signal transmission frame. D...Center device, 81-Bn...Subscriber device, C
1-Cn... Optical cable, 11... Switching circuit, 12
... ill 1 circuit, 131 to 13n... Optical transmitter for transmitting video and audio signals, 14.24... Optical transmitter for transmitting control signals, 15.23... Light for receiving control signals Receiver, 16.25...Interface circuit, 171~
17n, 21... Optical multiplexer/demultiplexer, 18... Optical star coupler, 22... Optical receiver for receiving video and audio signals, 26
...TV receiver IL27...terminal circuit.

Claims (1)

【特許請求の範囲】[Claims] センタ装置と複数の加入者装置との間をそれぞれ光伝送
路を介して接続し、センタ装置と各加入者装置との間で
制御信号の授受を行なって、この制御信号に応じてセン
タ装置から各加入者装置に対し各別に加入者が希望する
映像信号を伝送するCATV光伝送システムにおいて、
前記センタ装置に光スターカプラを設けるとともにこの
光スターカプラの一対の入出力端にそれぞれ各加入者装
置共通の制御信号送信器および制御信号受信器を接続し
、センタ装置から各加入者装置へ送信する制御信号を前
記制御信号送信器から光スターカプラを介して各加入者
装置へそれぞれ分配して送信し、かつ各加入者装置から
到来する制御信号を前記光スターカプラによりそれぞれ
前記制御信号受信器に導入し受信するようにしたことを
特徴とするCATV光伝送システムの制御信号伝送方式
The center device and a plurality of subscriber devices are each connected via an optical transmission line, and control signals are exchanged between the center device and each subscriber device, and the center device transmits and receives signals in response to the control signals. In a CATV optical transmission system that transmits video signals desired by each subscriber to each subscriber device,
An optical star coupler is provided in the center device, and a control signal transmitter and a control signal receiver common to each subscriber device are connected to a pair of input and output ends of the optical star coupler, respectively, and the control signal is transmitted from the center device to each subscriber device. The control signal transmitted from the control signal transmitter to each subscriber device via the optical star coupler is distributed and transmitted to each subscriber device, and the control signal arriving from each subscriber device is transmitted to the control signal receiver by the optical star coupler. 1. A control signal transmission method for a CATV optical transmission system, characterized in that it is introduced into and received by a CATV optical transmission system.
JP60039310A 1985-02-28 1985-02-28 Control signal transmission system for catv optical transmission system Pending JPS61198936A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP60039310A JPS61198936A (en) 1985-02-28 1985-02-28 Control signal transmission system for catv optical transmission system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP60039310A JPS61198936A (en) 1985-02-28 1985-02-28 Control signal transmission system for catv optical transmission system

Publications (1)

Publication Number Publication Date
JPS61198936A true JPS61198936A (en) 1986-09-03

Family

ID=12549539

Family Applications (1)

Application Number Title Priority Date Filing Date
JP60039310A Pending JPS61198936A (en) 1985-02-28 1985-02-28 Control signal transmission system for catv optical transmission system

Country Status (1)

Country Link
JP (1) JPS61198936A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6346020A (en) * 1986-08-13 1988-02-26 Hiroshi Tanaka Optical fiber wire broadcasting system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6346020A (en) * 1986-08-13 1988-02-26 Hiroshi Tanaka Optical fiber wire broadcasting system

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