JPS60253347A - Transmission controller - Google Patents

Transmission controller

Info

Publication number
JPS60253347A
JPS60253347A JP59110012A JP11001284A JPS60253347A JP S60253347 A JPS60253347 A JP S60253347A JP 59110012 A JP59110012 A JP 59110012A JP 11001284 A JP11001284 A JP 11001284A JP S60253347 A JPS60253347 A JP S60253347A
Authority
JP
Japan
Prior art keywords
control signal
state
power
load
power outage
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.)
Granted
Application number
JP59110012A
Other languages
Japanese (ja)
Other versions
JPH0350496B2 (en
Inventor
Takaaki Okude
隆昭 奥出
Jun Iguchi
潤 井口
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.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
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 Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP59110012A priority Critical patent/JPS60253347A/en
Publication of JPS60253347A publication Critical patent/JPS60253347A/en
Publication of JPH0350496B2 publication Critical patent/JPH0350496B2/ja
Granted legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/12Arrangements for remote connection or disconnection of substations or of equipment thereof
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/50Reducing energy consumption in communication networks in wire-line communication networks, e.g. low power modes or reduced link rate

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Small-Scale Networks (AREA)
  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Abstract

PURPOSE:To recover a load from a service interruption mode in a state suited to the using load and the using conditions, by providing a selection means to a control signal generator to decide whether or not a total control signal (nonconduction instruction) is delivered to all terminal devices and also providing a selection signal to the terminal device to decide whether or not the terminal device is actuated by the total control signal. CONSTITUTION:When a service interruption occurs, the latching relays 22 set within modules 10-12 are put under the service interruption states while keeping the states set before the service interruption. A power supply cutoff detector 18 provided within a terminal 9 detects the service interruption state. Then the control signals II (nonconduction instructions) are delivered all at once from a control signal output circuit 16 when the power supply is recovered. Here a state selection switch 19 can decide whether the signal II is transmitted or not. An arithmetic control means 21 turns off loads 13-15 by means of a relay 22 when each module receives the signal II. Here an action selection switch 23 can decide whether or not the means 21 puts the relay 22 under a nonconduction mode. The switches 19 and 23 are switched to each other and combined in various ways. Thus each load is reset when the power supply is recovered in a state suited to the using load and the using conditions. This also secures the safety.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は、同一伝送通信路上に互いに通信可能な複数個
の制御信号発生機器と複数個の端末装置を接続し、前記
制御信号発生機器から前屈伝送通信路に対して送信する
信号により前記端末装置を制御する伝送制御装置に関す
るものである。
DETAILED DESCRIPTION OF THE INVENTION Field of Industrial Application The present invention connects a plurality of control signal generating devices and a plurality of terminal devices that can communicate with each other on the same transmission communication path, and The present invention relates to a transmission control device that controls the terminal device using signals transmitted to a transmission channel.

従来例の構成とその問題点 第1図はホームオートメーション/ステムの従来例の構
成を示し、1は制御信号発生機器であるターミナルで、
複数個の端末装置であるモジュール2,3.4と、バス
5を介して結ばれている。
Configuration of a conventional example and its problems Figure 1 shows the configuration of a conventional example of a home automation/system. 1 is a terminal which is a control signal generating device;
It is connected via a bus 5 to modules 2, 3.4, which are a plurality of terminal devices.

前記各モジュール2,3.4にはそれぞれ負荷6゜7.
8か接続されており、′前記ターミナル1によって作ら
れた信号を、前記バス5を通して前記各モジュール2,
3.4に対して送信することにより前記各モジュール2
,3.4を制御するように々っており、前記各モジュー
ル2,3.4により前記各負荷6.ア、8はそれぞれ制
御される。このシステムでは停電からの電源復帰時の上
記各モジュール2,3.4の状態をあらかじめひとつの
状態に設定してあり、停電からの電源復帰時の状態を任
意に選択できないという欠点を有していた。
Each of the modules 2, 3.4 has a load of 6.7.
8 are connected to each module 2, so that the signal generated by the terminal 1 is passed through the bus 5 to each module 2,
3.4 by transmitting to each module 2
, 3.4, and each module 2, 3.4 controls each load 6. A and 8 are controlled respectively. This system has the disadvantage that the states of each of the modules 2, 3. Ta.

停電からの電源復帰時の各モジュール2,3.4の状態
としては、停電前の前記各モジュール2゜3.4の状態
を維持して停電から復帰するものと、あるいは停電から
の復帰時の安全性を確保するため前記各モジュール2,
3.4を非導通の状態で停電から復帰するものがあり、
あらかじめどちらか一方に設定してあり、これらを任意
に選択することはできなかった。ここで、停電からの雷
、源復帰時の各モジュール2,3.4の状態として、停
電前の前記各モジュール2,3.4の状態を維持して停
電から復帰した場合、前記各モジュール2゜3.4につ
ながる負荷6,7.8が停電からの復帰時に′ON状態
にあると危険である負荷の場合や外出時における停電か
らの復帰時の安全性に問題があった。
The state of each module 2, 3.4 when the power is restored after a power outage is that the state of each module 2, 3.4 is maintained before the power outage and the state is restored from the power outage, or when the power is restored from the power outage To ensure safety, each module 2,
There are some that recover from a power outage with 3.4 in a non-conductive state.
One or the other was preset and could not be selected arbitrarily. Here, as the state of each module 2, 3.4 at the time of lightning recovery from a power outage, if the state of each module 2, 3.4 before the power outage is maintained and the power is restored from the power outage, each module 2, 3. If the loads 6 and 7.8 connected to ゜3.4 are in the ON state when returning from a power outage, there is a problem with safety when the load is dangerous or when returning from a power outage when going out.

一方、停電からの電源復帰時の各モジュール2゜るが、
短時間の停電の場合や、停電からの復帰時に導通状態に
あっても危険ではない負荷を前記各モジュール2,3.
4につないでいる場合には、停電からの電源復帰時の負
荷状態がすべて非導通状態となり、停電前の9荷状態を
維持しないため不都合であった。
On the other hand, when the power is restored from a power outage, each module is 2°
In the case of a short power outage or when recovering from a power outage, load that is not dangerous even if it is in a conductive state is transferred to each of the modules 2, 3.
4, all the load states become non-conductive when the power is restored from a power outage, and the 9 load state before the power outage is not maintained, which is inconvenient.

発明の目的 本発明は前記欠点に鑑み、停電からの電源復帰時の前記
各モジュールの状態を任意に選択することのできる手段
を有する伝送制御装置を提供するものであるっ 発明の構成 この目的を達成するために本発明の伝送制御装置は、停
電からの電源復帰時に同時にすべての端末装置を制御す
る一斉制御信号を出力するか出力しないかを任意に選択
できる手段を有する制御信号発生機器と、停電からの電
源復帰時に停電前の状態を保持しつつ機器状態を復帰す
る機能と前記制御信号発生機器からの停電からの電源復
帰時の前記−斉制御信号を受信後、動作するか否かを任
意に選択する手段を有する複数個の前記端末装置と、前
記制御信号発生機器と前記端末装置とを互いに接続する
伝送通信路とから構成されている。
OBJECTS OF THE INVENTION In view of the above drawbacks, the present invention provides a transmission control device having means for arbitrarily selecting the state of each module when the power is restored from a power outage. To achieve this, the transmission control device of the present invention includes a control signal generating device having a means for arbitrarily selecting whether to output or not output a simultaneous control signal that simultaneously controls all terminal devices when power is restored from a power outage; A function for restoring the device state while maintaining the state before the power outage when the power is restored from a power outage, and a function to determine whether to operate after receiving the simultaneous control signal from the control signal generating device when the power is restored from the power outage. It is composed of a plurality of terminal devices having arbitrary selection means, and a transmission communication path that connects the control signal generating device and the terminal devices to each other.

実施例の説明 以下本発明の一実施例について、図面を参照しながら説
明する。第2図は本発明の実施例におけるホームオート
メーションシステムの伝送制’M+ g置の構成を示す
ものである。第2図において、9は制御信号発生機器で
あるターミナル、10,11゜12はターミナル9から
の信号により遠隔制御される端末装置であるモジュール
、13,14.15は前記各モジュール10,11.1
2につながる負荷である。前記ターミナル9は制御信号
出力回路16と送信回路17と電源断検出装置18と電
源復帰待状態選択スイ・ツチ19(以下状態選択スイッ
チと呼ぶ)とから構成され、互いに通信可能なように複
数設けてもよい。前記モジュール1゜は通信手段20と
演算制御手段21とラッチンクリレー22と動作選択ス
イッチ23とから構成され、前記モシュー/l/11.
12は前記モジュール1oと同じ構成からなり、ここで
は図を省略する。
DESCRIPTION OF EMBODIMENTS An embodiment of the present invention will be described below with reference to the drawings. FIG. 2 shows the configuration of a transmission system 'M+g' in a home automation system according to an embodiment of the present invention. In FIG. 2, 9 is a terminal that is a control signal generating device, 10, 11.12 are modules that are terminal devices that are remotely controlled by signals from the terminal 9, and 13, 14, 15 are the respective modules 10, 11. 1
This is a load that leads to 2. The terminal 9 is composed of a control signal output circuit 16, a transmitting circuit 17, a power failure detection device 18, and a power recovery standby state selection switch 19 (hereinafter referred to as a state selection switch), and a plurality of them are provided so that they can communicate with each other. You can. The module 1° is composed of a communication means 20, an arithmetic control means 21, a latching relay 22, and an operation selection switch 23, and the module 1.degree.
12 has the same configuration as the module 1o, and its illustration is omitted here.

24は前記ターミナ/v9 ト前記各モジュール10゜
11.12を結ぶ伝送通信路としてと、電源ラインとし
ての電灯線である。
Reference numeral 24 denotes an electric light line which serves as a transmission communication path connecting the terminal/v9 and each of the modules 10, 11, and 12, and serves as a power supply line.

以上のように構成された伝送制御装置について以下その
動作を説明する。ます、ターミナ/I/9は各モシュー
/l/10,11.12と電灯線24を介してつ力がっ
ており、制御信号出力回路によりつくられた制御信号I
を送信回路17によりターミナ/L’9から電灯線24
を介してモシューA−10。
The operation of the transmission control device configured as described above will be explained below. Terminal /I/9 is connected to each Moshu /l/10, 11.12 via power line 24, and the control signal I generated by the control signal output circuit
The transmission circuit 17 connects the power line 24 from the terminal/L'9 to the power line 24.
Moshu A-10 via.

1 ’1 、12に対して出力し、通信手段20によシ
+iil +fg制御イ、i号Iを受信したモシュ)V
 1 ’0 、11 。
1 '1, 12, and the communication means 20 receives the +iil +fg control A, i No. I) V)
1 '0, 11.

12は演算制御手段21がラッチンクリレ−22を制御
して導通状態、あるいは非導通状態となり、各モシュー
/L/10,11.12にっ々がる各負荷13.14,
15をON状態、あるいは、OFF状態に制御するので
ある。通常、ターミナ/I/9ハ各モンユー/l/10
,11,12を個4別々に制御する。停電発生時、モシ
ュ/v10 s 11 y 12内のラッチングリレー
22の接点は停電前の状態を卸、持しつつ停電状態とな
り、タ〜ミナ/L’9内の電源断検出装置18は電灯線
24が停電状態にあることを検出して、停電からの電源
復帰時に制御信り出力回路16に対して制御信号■を送
出する。
12, the arithmetic control means 21 controls the latching relay 22 to be in a conductive state or a non-conductive state, and each load 13.14, which is connected to each Moshu/L/10, 11.12,
15 is controlled to be in an ON state or an OFF state. Normally, Termina / I / 9 ha each Monyu / l / 10
, 11, and 12 are controlled separately. When a power outage occurs, the contacts of the latching relay 22 in the MOSH/V10S11Y12 remain in the state before the power outage, and the power outage detection device 18 in the terminals/L'9 detects the power line. 24 is in a power outage state, and sends a control signal (2) to the control signal output circuit 16 when the power is restored from the power outage.

停電からの?■)源復帰時、電源断検出装ft’−f1
Bからの1111記制御侶号■を受信した制御信号出力
回路16は一斉非導通命令を内容とする一斉制御信号j
号を発生する。ここで、11■記−前制御信号は、通常
クーミナ/L’9が各化ジュール10,11.12を個
々別々に制御するのであるが、前記−斉制御伯シノヲタ
ーミナ/l/9が送信し、各モシュー/I/10゜11
.12が受信することにより、前記夕〜ミナル9が11
11記各七シ二一ル10,11,12を−・斉に制御す
る信号である。また前記−前非導通命令は、モジュール
10,11.12のすべてを同時に非導通状態となるよ
うに制御する命令である。
From a power outage? ■) When power is restored, power failure detection device ft'-f1
The control signal output circuit 16 that received the 1111 controller number ■ from B outputs a simultaneous control signal j containing a simultaneous disconnection command.
generate a number. Here, the control signal mentioned in 11) is normally transmitted by the simultaneous control unit Sinowo Termina/l/9, although the Kumina/L'9 separately controls each module 10, 11.12. , each Moshu/I/10°11
.. 12 receives the signal, the evening ~minal 9 becomes 11.
This is a signal that simultaneously controls each of the seven units 10, 11, and 12 in Item 11. Further, the -before non-conducting command is a command for controlling all of the modules 10, 11, and 12 to be in a non-conducting state at the same time.

停電からの′電源復帰時に、制御信号出力回路16によ
シ作られた一斉制御信号は送信回路17によりターミナ
/L/9から電灯!24を介して各モシュ−/l/ 1
0,11.12に対して送出される。ここで前記−斉制
曲+ イ%す゛をターミナル9から送出するか、送出し
ないかは、状態選択スイッチ19を切り換えることによ
って任意に選択することができる。次ニ、各モジュール
10.’1j、12idターミナル9から電灯線24を
介して各モジュール10.11.12に達したー・前制
御信号を通信手段20が受信し、受信した前記−前制御
信号によす演算制御ト段21かラッチングリレー22の
接点が非導通状態となるように制御して、各モジュール
10,11.12につながる負荷13 、14゜15を
OFF状態とする。ここで・、通信手段2゜か前記−前
制御信号を受(J1’ Lだ後、演算制御手段21がラ
ッチングリレ・−22を非導通状態に力るようにするか
、否かは動作選択スイッチ23を切り換えることにより
任意に選択することができる。
When the power is restored from a power outage, a simultaneous control signal generated by the control signal output circuit 16 is sent to the transmitter circuit 17 from the terminal/L/9 to turn on the lights! Each mosh-/l/1 through 24
0,11.12. Here, it can be arbitrarily selected by switching the state selection switch 19 whether or not to send out the above-mentioned "-simultaneous tune + i%" from the terminal 9. Next, each module 10. The communication means 20 receives the pre-control signal from the terminal 9 through the power line 24 to each module 10, 11, and 12, and performs an arithmetic control step based on the received pre-control signal. The contacts of the latching relays 21 and 22 are controlled to be non-conductive, and the loads 13, 14 and 15 connected to each module 10, 11, and 12 are turned off. Here, after the communication means 2° receives the above-mentioned control signal (J1'L), the operation is selected as to whether or not the arithmetic control means 21 forces the latching relay -22 into a non-conducting state. Any selection can be made by switching the switch 23.

°以上のように動作する伝送制御装置の使用例を表を参
照し々から示す。各モジュール10,11. −12に
つながる負荷13,14.15が停電からの電源復帰時
にON状態にあると危険であるものである場合や、外出
時などのように停電からの型窩(復帰時に負(4r13
 、14 、15がON状態にあると安全性に問題があ
る場合には、状態選択スイッチ19を電源復帰時にクー
ミナ/L’9が一斉非導通命令を内容とするー・前制御
信号を送信するように設定し、各モジュール10,11
.12の通イ1+f段20が前記−・前制御信号を受信
後、ラッチングリレー22が非導通状態となるように演
算制御1N921が動作するように動作選択スイッチ2
3を設定[〜でおくことにより、停電からの電源復帰時
に各モジュー/l/10,11.12につながる負荷1
3,14.16をOFF状態とすることができ、安全V
1が確保される。一方、↑1.〕源復帰+11!IにO
N状態にあっても危険ではない負荷を各モンユ−IL’
 10,11.12につないである・場合や、短時間の
停電からの電源復帰時などで停電[jllの負荷状態で
停電から復帰したい場合には、状態選択スイッチ19を
停電からの電源復帰時に一斉非導通命令を内容とする一
斉制御信号をターミナル9から送信しないように設定し
ておくことにより負荷13.14.15を停電前の負荷
状態で停電から復帰させることができる。また、各モジ
ュール10.11.12につなかる負荷13,14,1
5が電源復帰時にON状態にあると危険なものと危険で
ないものの両方を含む場合には、状態選択スイッチ19
を一斉非導通命令を内容とする一斉制御信号をターミナ
ル9から送信するように1投定し、M7源復帰時にON
状態にあると危険である負荷につながるモジュールの動
作選択スイッチを前記−前制御信号を通(Pi手段2o
が受信後ラッチングリレー22が非導通状態となるよう
に演算制御1段21が動作するように設定し、電源復帰
時にON状態にあっても危険ではない負4Fにつながる
モシュ・−ルの動作選択スイッチを111I記−・斉制
御信すを通信手段20が受信した後もラッチングリレー
22のj底点の状態を変化させ々いように演′L7:制
御手段21が動作するように設定することにより、各モ
ジュール10,11.12につながる負荷13.14.
15の安全性に適合した状態で電源復帰時に負荷を復帰
することができる。以上のように本実施例によれば、状
態選択スイッチ19と動作選択スイッチ23とを任意に
切り換え、種々組合わせることにより使用負荷に適応し
、使用時の条件に適応じた状態で停電からの電源復帰時
に各負荷を復帰することができ、安全性も確保される。
Examples of usage of the transmission control device operating as described above will be shown below with reference to the table. Each module 10, 11. -12, if the loads 13, 14, and 15 connected to
, 14, and 15 are in the ON state, when the state selection switch 19 is turned on and the power is restored, the Koumina/L'9 transmits a pre-control signal containing a simultaneous non-conduction command. Set each module 10, 11 as follows.
.. The operation selection switch 2 is set so that the arithmetic control 1N921 operates so that the latching relay 22 becomes non-conductive after the 12-pass A1+F stage 20 receives the -/front control signal.
3 [by setting ~, the load 1 connected to each module /l/10, 11.12 when the power is restored from a power outage.
3, 14, and 16 can be turned off, ensuring safety V
1 is secured. On the other hand, ↑1. ]Return to the source +11! I to O
A load that is not dangerous even if it is in the N state is
10, 11, 12, or when the power is restored from a short power outage [If you want to recover from a power outage while the jll is under load, set the status selection switch 19 when the power is restored from a power outage. By setting the terminal 9 not to transmit a simultaneous control signal containing a simultaneous disconnection command, the loads 13, 14, and 15 can be recovered from a power outage in the load state before the power outage. Also, loads 13, 14, 1 connected to each module 10.11.12
If 5 includes both dangerous and non-dangerous items if it is in the ON state when the power is restored, the status selection switch 19
A simultaneous control signal containing a simultaneous disconnection command is sent from terminal 9, and it is turned ON when the M7 source returns.
The operation selection switch of the module connected to the load which is dangerous if the condition is
After receiving the latching relay 22, the calculation control first stage 21 is set to operate so that the latching relay 22 becomes non-conductive, and when the power is restored, it is possible to select the operation of the mosh-ru that leads to negative 4F, which is not dangerous even if it is in the ON state. Set the control means 21 to operate so that the state of the j bottom point of the latching relay 22 does not change constantly even after the communication means 20 receives the switch control signal 111I. The loads 13.14. connected to each module 10, 11.12.
When the power is restored, the load can be restored in a state that complies with the safety requirements of No. 15. As described above, according to this embodiment, by arbitrarily switching the state selection switch 19 and the operation selection switch 23 and using various combinations, it is possible to adapt to the usage load and to recover from a power outage in a state appropriate to the usage conditions. Each load can be restored when the power is restored, ensuring safety.

(以 下 余 白) イ[]シ、 −任意に設定 「危険な負荷」、「安全な負荷」は電源車M)時にON
状態にある場合のことを示す。
(Leaving space below) I[]shi, -Optionally set "dangerous load" and "safe load" to ON when power supply vehicle M)
Indicates a situation in which a person is in a state.

なお本実施例ではクーミナ)V9と各モジュール10.
11.12を結ぶ伝送通信路として電灯線を用いている
が、電灯線とは別に伝送通信路を設けてもよい。
In addition, in this embodiment, Kumina) V9 and each module 10.
Although a power line is used as a transmission communication path connecting 11 and 12, a transmission communication path may be provided separately from the power line.

発明の効果 以上のように本発明は停電からの電源復帰時にイ同御信
号発生機器から一斉非導通命令を内容とする一斉制御信
号を伝送通信路を介して複数の端末装置に対して送出し
て制御し、前記Fll(J御信号・発生機器は前記−斉
制御信号を送出するか送出しないかを選択する手段を備
え、前記端末装置は停電1)1fの1jII記端末装置
1ノ1′につながる負荷の状態を維持しつつ停電から復
帰する機能と、IiI記−斉制御(i’i号を受(4後
動作するか盃かを選択する手段を備えることにより、使
用負荷と使用条件に適応した負荷状態で負荷を停電から
復帰することができるため、使い勝手をよくすると同時
に、安全性を確保することができその効果は大なるもの
がある。
Effects of the Invention As described above, the present invention is capable of transmitting a simultaneous control signal containing a simultaneous disconnection command from a control signal generating device to a plurality of terminal devices via a transmission communication path when the power is restored from a power outage. The Fll (J control signal/generating device is provided with means for selecting whether to send out or not send out the Fll (J control signal/generating device), and the terminal device is operated during a power outage 1) 1f, 1jII, terminal device 1-1' It has a function to recover from a power outage while maintaining the state of the load that leads to Since the load can be recovered from a power outage in a load condition that is suitable for the system, it is easy to use and at the same time ensures safety, which has great effects.

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

第1図はホームオートノージョンシステムの従来例の構
成を示すゾロツク図、第2図は本発明の実施例における
ホームオートメーションシステムの伝送制御装置の構成
を示すブIコック図である。 9・・・・・ターミナ/L’、10,11.12・・・
・・・モジュール、19・・・・電源復帰待状態選択ス
イッチ1.23・・・・・・動作選択スイッチ。
FIG. 1 is a block diagram showing the configuration of a conventional home automation system, and FIG. 2 is a block diagram showing the configuration of a transmission control device of a home automation system according to an embodiment of the present invention. 9...Termina/L', 10, 11.12...
...Module, 19...Power return standby state selection switch 1.23...Operation selection switch.

Claims (1)

【特許請求の範囲】 (1)制御信号発生機器と、この制御信号発生機器から
の信号により遠隔制御される複数の端末装置と、前記制
御信号発生機器と前記端末装置を結ぶ伝送通信路とを有
し、制御信号発生機器は、停電からの電源復帰時に同時
にすべての端末装置を制御する一斉制御信号を出力する
か出力しないかを任意に選択できる手段を有し、前記端
末装置は停電からの電源復帰時に停電前の状態を保持1
つつ機器状態を復帰する機能と、前記−斉制御信号を受
信後、動作するか否かを任意に選択する手段を有する伝
送制御装置っ(2)−斉制御信号は、同時にすへての端
末装置を制御し、非導通状態とする一斉非導通命令から
なる特許請求の範囲第1項記載の伝送制御装置。 (3)端末装置は、停電からの電源復帰時に停電前の負
荷状態を保持しつつ機器状態を復帰する特許請求の範囲
第1項又は第2項記載の伝送制御装置。
[Scope of Claims] (1) A control signal generating device, a plurality of terminal devices remotely controlled by signals from the control signal generating device, and a transmission communication path connecting the control signal generating device and the terminal devices. The control signal generating device has a means for arbitrarily selecting whether or not to output a simultaneous control signal that controls all terminal devices at the same time when power is restored from a power outage, and the terminal device Retains the state before power outage when power is restored1
(2) The transmission control device has a function of restoring the equipment state while simultaneously returning the equipment state, and a means of arbitrarily selecting whether or not to operate after receiving the simultaneous control signal. (2) - The simultaneous control signal is transmitted simultaneously to all terminals 2. The transmission control device according to claim 1, comprising a simultaneous non-conducting command for controlling the device and placing it in a non-conducting state. (3) The transmission control device according to claim 1 or 2, wherein the terminal device restores the equipment state while maintaining the load state before the power outage when the power is restored from a power outage.
JP59110012A 1984-05-30 1984-05-30 Transmission controller Granted JPS60253347A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP59110012A JPS60253347A (en) 1984-05-30 1984-05-30 Transmission controller

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP59110012A JPS60253347A (en) 1984-05-30 1984-05-30 Transmission controller

Publications (2)

Publication Number Publication Date
JPS60253347A true JPS60253347A (en) 1985-12-14
JPH0350496B2 JPH0350496B2 (en) 1991-08-01

Family

ID=14524878

Family Applications (1)

Application Number Title Priority Date Filing Date
JP59110012A Granted JPS60253347A (en) 1984-05-30 1984-05-30 Transmission controller

Country Status (1)

Country Link
JP (1) JPS60253347A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01131239U (en) * 1988-02-29 1989-09-06
JP2014027721A (en) * 2012-07-24 2014-02-06 Toshiba Corp Energy management system, energy management device, control method, and program

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5716533A (en) * 1980-07-03 1982-01-28 Tokyo Shibaura Electric Co Power source circuit controller
JPS58215938A (en) * 1982-06-09 1983-12-15 株式会社日立製作所 Indoor power line carriage control system

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5716533A (en) * 1980-07-03 1982-01-28 Tokyo Shibaura Electric Co Power source circuit controller
JPS58215938A (en) * 1982-06-09 1983-12-15 株式会社日立製作所 Indoor power line carriage control system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01131239U (en) * 1988-02-29 1989-09-06
JP2532448Y2 (en) * 1988-02-29 1997-04-16 日本電気株式会社 Centralized management system for electrical equipment
JP2014027721A (en) * 2012-07-24 2014-02-06 Toshiba Corp Energy management system, energy management device, control method, and program

Also Published As

Publication number Publication date
JPH0350496B2 (en) 1991-08-01

Similar Documents

Publication Publication Date Title
CN108011443B (en) Non-emergency load unloading system and unloading method for helicopter
JP2770446B2 (en) Redundant power supply startup method
JPS60253347A (en) Transmission controller
US20230073870A1 (en) Rail-mounted device, automation system and method for process automation
JP2654139B2 (en) Branch for wireless signal line of remote monitoring and control system
CN218940767U (en) Power supply switching system and power supply
US4985886A (en) Transmission line branching device
SU1383232A1 (en) Device for remote determination of line damages and control of parallel distribution electric network
CN112670946B (en) Power supply system, control method of power supply system, and electrical device
CN212304862U (en) Dual-redundancy conversion power supply circuit
JP3508380B2 (en) Remote monitoring and control system
SU430359A1 (en) SYSTEM OF TELEMECHANICS OF NEAR ACTION
CN211742256U (en) 16-way bus linkage device
SU819887A1 (en) Device for automatic switching -on of standby power source of users
CN115882445A (en) Power supply line switching system and method for data center and programmable logic controller
SU1415328A1 (en) Device for controlling parallel operation of generators
SU781862A1 (en) Emergency signalling device
JPH067658Y2 (en) Remote control device
JP4654787B2 (en) Electric switch and electric switch system
SU1513497A1 (en) Device for receiving remote control commands
JPH0239311A (en) Power supply control system
JPS631229A (en) Power supply holding system for electrical equipment
SU1010595A1 (en) Object remote control device
KR0167165B1 (en) Process device in home of remote inspection of a meter system
JPS6142981B2 (en)