JPH01186117A - Automatic connection system for electric circuit network simulator - Google Patents

Automatic connection system for electric circuit network simulator

Info

Publication number
JPH01186117A
JPH01186117A JP63007829A JP782988A JPH01186117A JP H01186117 A JPH01186117 A JP H01186117A JP 63007829 A JP63007829 A JP 63007829A JP 782988 A JP782988 A JP 782988A JP H01186117 A JPH01186117 A JP H01186117A
Authority
JP
Japan
Prior art keywords
connection
automatic connection
electric circuit
circuit network
components
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
JP63007829A
Other languages
Japanese (ja)
Other versions
JPH0714255B2 (en
Inventor
Reiji Takeuchi
竹内 玲治
Isamu Suzuki
勇 鈴木
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.)
Fuji Electric Co Ltd
Fuji Facom Corp
Original Assignee
Fuji Electric Co Ltd
Fuji Facom 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 Fuji Electric Co Ltd, Fuji Facom Corp filed Critical Fuji Electric Co Ltd
Priority to JP63007829A priority Critical patent/JPH0714255B2/en
Publication of JPH01186117A publication Critical patent/JPH01186117A/en
Publication of JPH0714255B2 publication Critical patent/JPH0714255B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

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  • Testing Electric Properties And Detecting Electric Faults (AREA)
  • Supply And Distribution Of Alternating Current (AREA)

Abstract

PURPOSE:To simplify and shorten work and to remove a danger of artificial erroneous connection by selectively connecting the cross points of buses by a control signal from an automatic connection controller to connect components therebetween. CONSTITUTION:When an electric circuit network having a generator Ge, transmission lines L1-L4, a transformer Tr, a breaker CB and a load LD is simulated, the terminals of corresponding components 3 are connected to one end of the bus Y of an automatic connection matrix 2. When connecting information is input to an automatic connection unit 1, a designated component 3 is selected, and the cross point (a) of buses X, Y to be connected by a relay contact RY1 is determined according to a designated node. A control signal to the relay coil RY corresponding to the determined connection point is generated, and this signal is output as a matrix automatic connection command.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明は電気回路網シミュレータの自動接続システムに
かかり、詳しくは、電力系統等のシミュレータにおいて
電気回路網を構成する各種電気機器等の回路要素のコン
ポーネントを任意かつ自動的に接続可能とした自動接続
システムtこ関する。
Detailed Description of the Invention (Industrial Application Field) The present invention relates to an automatic connection system for an electric circuit network simulator, and more specifically, it relates to an automatic connection system for an electric circuit network simulator, and more particularly, it relates to circuit elements such as various electric devices that constitute an electric circuit network in a simulator of an electric power system, etc. The present invention relates to an automatic connection system that can arbitrarily and automatically connect components of the present invention.

(従来の技術及びその問題点) 従来、電力系統等の電気回路網を解析するシミュレータ
としては、電気回路網を構成する回路要素の機能をコン
ポーネントにより一定の縮尺にて等価的に再現し、これ
らのコンポーネントを手動操作によって接続するシステ
ムが知られている。
(Prior art and its problems) Conventionally, simulators for analyzing electrical circuit networks such as power systems have been used to equivalently reproduce the functions of circuit elements constituting the electrical circuit network at a certain scale using components. Systems are known in which components are connected by manual operation.

しかしながら、これによると接続作業に長時間を要する
と共に多大な労力を必要とするという欠点があり、また
、場合によっては人為的ミスによる誤接続を招く危険が
あって運用状の効率が著しく低いものであった。更に、
同一の電気回路網を構成する場合でもその都度同じ接続
作業を繰り返さなくてはならず、極めて煩雑であった。
However, this method has the disadvantage that the connection process takes a long time and requires a lot of effort, and in some cases, there is a risk of erroneous connections due to human error, making the operation letter extremely inefficient. Met. Furthermore,
Even when configuring the same electrical circuit network, the same connection work must be repeated each time, which is extremely complicated.

本発明は上記問題点を解消するために提案されたもので
、その目的とするところは、各コンポーネントを任意の
態様で自動的に接続可能とし、手動接続作業に伴う作業
時間の長期化や煩雑さを解消し、人為的な誤接続の危険
性を除去すると共に、同一の電気回路網も容易に再現可
能として運用効率を大幅に向上させ得る電気回路網シミ
ュレータの自動接続システムを提供することにある。
The present invention was proposed to solve the above problems, and its purpose is to automatically connect each component in an arbitrary manner, thereby prolonging the work time and complicating manual connection work. An object of the present invention is to provide an automatic connection system for an electric circuit simulator that can eliminate the risk of artificial connection errors and greatly improve operational efficiency by making it possible to easily reproduce the same electric circuit network. be.

(問題点を解決するための手段) 上記目的を達成するため、本発明は、シミュレーション
するべき電気回路網の接続分岐点を示すノードと、電気
回路網を構成する回路要素とを示す接続情報に基づき、
前記回路要素に対応するコンポーネントの接続点を決定
して制御信号として出力する自動接続制御装置と、各コ
ンポーネントがそれぞれ一端に接続された母線を有する
マトリクス状の複数の母線からなる自動接続マトリクス
とを備え、前記制御信号により前記母線相互の交点を選
択的に接続して前記コンポーネントを相互に接続するこ
とを特徴とする。
(Means for Solving the Problems) In order to achieve the above object, the present invention provides connection information indicating nodes indicating connection branch points of an electric circuit network to be simulated and circuit elements constituting the electric circuit network. Based on
an automatic connection control device that determines the connection point of a component corresponding to the circuit element and outputs it as a control signal; and an automatic connection matrix that includes a plurality of busbars in a matrix shape, each component having a busbar connected to one end thereof. The control signal selectively connects the intersections of the busbars to connect the components to each other.

(作用) 本発明によれば、自動接続制御装置に入力される接続情
、報により、実際の電気回路網を構成する電気機器等の
複数の回路要素と、電気回路網の接続分岐点を示すノー
ドとが指定される。自動接続制御装置はかかる接続情報
に基づき、前記回路要素に対応するコンポーネントが一
端に接続された母線相互の交点を接続点として決定し、
これらの交点を接続するためのリレー等に制御信号を送
出する。
(Function) According to the present invention, the connection information inputted to the automatic connection control device indicates a plurality of circuit elements such as electrical equipment constituting an actual electrical circuit network and connection branch points of the electrical circuit network. A node is specified. Based on the connection information, the automatic connection control device determines, as a connection point, the intersection of the busbars to which the components corresponding to the circuit elements are connected at one end;
A control signal is sent to a relay etc. for connecting these intersection points.

この制御信号により、前記交点(接続点)及び母線を介
して所定のコンポーネントが相互に接続され、シミュレ
ーションするべき電気回路網と同一の接続態様を有する
シミュレーションモデルが構成されることになる。
By this control signal, predetermined components are interconnected via the intersection points (connection points) and busbars, and a simulation model having the same connection mode as the electrical circuit network to be simulated is constructed.

(実施例) 以下、図に沿って本発明の一実施例を説明する。(Example) An embodiment of the present invention will be described below with reference to the drawings.

第1図はこの実施例における自動接続システムの構成を
示すもので、図において、1は自動接続制御装置tC以
下、単に制御装置という)であり、この制御装置1は、
シミュレーションを行うべき電気回路網の接続情報(電
気機器等の接続態様)を外部から受け、この接続情報か
ら後述する所定のコンポーネント3と自動接続マトリク
ス2の接続点とを選択決定してケーブル4上に制御信号
を出力するものである。
FIG. 1 shows the configuration of the automatic connection system in this embodiment. In the figure, 1 is an automatic connection control device tC (hereinafter simply referred to as a control device), and this control device 1 is:
Connection information of the electric circuit network to be simulated (connection mode of electrical equipment, etc.) is received from the outside, and predetermined components 3 and connection points of the automatic connection matrix 2, which will be described later, are selected and determined from this connection information and connected to the cable 4. It outputs a control signal to the

また、制御装置illには前記ケーブル4を介して自動
接続マトリクス(以下、単にマトリクスという)2が接
続されている。このマトリクス2は、第3図に示す如く
、コンポーネントの総数や端子数に応じて設けられた複
数の母線X、Yをマトリクス状に配置して構成されてい
る。そして、第4図に示すように、各母線X、Yが交差
する交点aには前記制御信号により通電されるリレーコ
イルRYが設けられ、その接点RY、の閉成によって母
線X、Yが接続されるようになっている。
Further, an automatic connection matrix (hereinafter simply referred to as a matrix) 2 is connected to the control device ill via the cable 4. As shown in FIG. 3, this matrix 2 is constructed by arranging a plurality of bus lines X and Y in a matrix according to the total number of components and the number of terminals. As shown in FIG. 4, a relay coil RY that is energized by the control signal is provided at the intersection a where each bus line X and Y intersect, and when the contact RY is closed, the bus lines X and Y are connected. It is now possible to do so.

再び第1図において、マトリクス2の後段、詳しくは母
線Yの一端には、シミュレーションを行うべき電気回路
網を構成する発電機、送電線、変圧器の如き各種電気機
器や部品の機能を一定の縮尺に従って等測的に実現した
複数のコンポーネント3が予め接続されている。
Again in FIG. 1, at the rear of the matrix 2, more specifically at one end of the bus Y, there are fixed functions of various electrical devices and parts such as generators, power transmission lines, and transformers that make up the electrical circuit network to be simulated. A plurality of components 3 realized isometrically according to scale are connected in advance.

次に、この作用を説明する。Next, this effect will be explained.

例えば、第2図に示すように、発電機Go、送電線L1
〜L4、変圧器Tr、遮断器CB及び負荷LDからなる
単純な電気回路網をシミュレーションする場合を考え、
これらに対応するコンポーネント3の各端子が、第3図
に示す如く母線Yの一端に予めそれぞれ接続されている
とする。なお、図示されていないが、母線Yは一般的に
更に多数併設されており、残余の母線Yの一端には今回
使用されない他のコンポーネント3がそれぞれ接続され
ているものとする。
For example, as shown in FIG. 2, the generator Go, the power transmission line L1
~ Consider the case of simulating a simple electric circuit network consisting of L4, transformer Tr, circuit breaker CB, and load LD,
It is assumed that each terminal of the component 3 corresponding to these is connected in advance to one end of the bus line Y, as shown in FIG. Although not shown in the drawings, it is generally assumed that a larger number of bus lines Y are installed, and other components 3 that are not used this time are connected to one ends of the remaining bus lines Y.

自動接続の手順としては、まず、第2図の電気回路網に
かかる接続情報が制御装置1に入力される。この接続情
報は、回路要素の種類、換言すればシミュレーションに
使用するコンポーネント3の種類と、第2図における接
続分岐点を示すノードとの組合せによって構成されるも
のであり、第5図の接続情報入力ステップ内のステップ
SL。
As for the automatic connection procedure, first, connection information regarding the electric circuit network shown in FIG. 2 is input to the control device 1. This connection information is composed of a combination of the type of circuit element, in other words, the type of component 3 used in the simulation, and the node indicating the connection branch point in FIG. 2, and the connection information in FIG. Step SL within the input step.

S2によりこれらが指定される。These are specified by S2.

次に、接続情報の入力がすべて終了したか否かを判断し
くステップS3)、未終了時にはステップS1に戻ると
共に、終了している場合には後続の接続演算ステップに
移行する。
Next, it is determined (step S3) whether or not all the connection information has been inputted. If not, the process returns to step S1, and if it has been completed, the process moves to the subsequent connection calculation step.

接続演算ステップでは、前記ステップS2により指定さ
れたコンポーネント3を選択する(ステップS4)と共
に、ステップS1により指定されたノードに従い、リレ
ー接点RY、によって接続するべき母線X、Yの交点a
(接続点)を決定する(ステップS5)。
In the connection calculation step, the component 3 specified in step S2 is selected (step S4), and the intersection a of bus lines X and Y to be connected by relay contact RY is determined according to the node specified in step S1.
(connection point) is determined (step S5).

その後、上記の如く決定された接続点に対応する各リレ
ーコイルRYへの制御信号を生成し、これをマトリクス
自動接続指令としてマトリクス2に出力することにより
、第6図に太線で示すように各コンポーネント3が母線
X、Y及びリレー接点RY、により自動的に接続され、
第2図の電気回路網のシミュレーションモデルが実現さ
れるものである。
Thereafter, a control signal is generated for each relay coil RY corresponding to the connection point determined as above, and this is output to matrix 2 as a matrix automatic connection command, so that each component 3 is automatically connected by busbars X, Y and relay contacts RY;
The simulation model of the electric circuit network shown in FIG. 2 is realized.

なお、制御装置1において、同一の接続情報に対するコ
ンポーネント及び接続点をメモリ内に記憶しておくこと
により、同一の電気回路網のシミュレーションモデルを
容易に構成することができ。
In addition, in the control device 1, by storing components and connection points corresponding to the same connection information in the memory, a simulation model of the same electric circuit network can be easily constructed.

シミュレーションを繰り返す場合に極めて便利である。This is extremely useful when repeating simulations.

また、交点のリレー個数を削減するため、コンポーネン
ト3の一部または全部を母線Xに接続しておくことも可
能である。
Moreover, in order to reduce the number of relays at the intersection, it is also possible to connect some or all of the components 3 to the bus line X.

(発明の効果) 以上のように本発明によれば、接続情報を入力するだけ
で任意の電気回路網のシミュレーションモデルを構成す
ることができ、従来のように手動操作に伴う作業時間の
長期化や煩雑さを完全に解消することができる。同時に
人為的な誤接続も生じないため、信頼性の向上に寄与す
ることが可能である。
(Effects of the Invention) As described above, according to the present invention, it is possible to configure a simulation model of any electrical circuit network simply by inputting connection information. and complexity can be completely eliminated. At the same time, since artificial connection errors do not occur, it is possible to contribute to improved reliability.

また、同一の電気回路網の再現が容易であり、フレキシ
ビリティに富み、かつ運用効率の極めて高い電気回路網
シミュレータを提供することができる等の効果がある。
Further, it is possible to easily reproduce the same electric circuit network, and it is possible to provide an electric circuit network simulator that is highly flexible and has extremely high operational efficiency.

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

図は本発明の一実施例を示すもので、第1図は自動接続
システム全体の構成図、第2図はシミュレーションを行
う電気回路網の一例を示す結線図、第3図は自動接続マ
トリクス及びコンポーネントの説明図、第4図は接続点
の説明図、第5図は自動接続処理を示すフローチャート
、第6図は第2図の電気回路網を自動接続マトリクス上
で実現した場合の説明図である。 1・・・自動接続制御装置 2・・・自動接続マトリクス 3・・・コンポーネント   4・・・ケーブルX、Y
・・・母線      RY・・・リレーコイルRY工
・・・接点       a・・・交点第1図 第2図 −一一一人一一一一)
The figures show one embodiment of the present invention. Fig. 1 is a configuration diagram of the entire automatic connection system, Fig. 2 is a wiring diagram showing an example of an electric circuit network for simulation, and Fig. 3 is an automatic connection matrix and Figure 4 is an explanatory diagram of the components, Figure 4 is an explanatory diagram of connection points, Figure 5 is a flowchart showing automatic connection processing, and Figure 6 is an explanatory diagram when the electric circuit network in Figure 2 is realized on an automatic connection matrix. be. 1... Automatic connection control device 2... Automatic connection matrix 3... Component 4... Cables X, Y
...Bus bar RY...Relay coil RY work...Contact a...Intersection Figure 1 Figure 2-111111)

Claims (1)

【特許請求の範囲】 シミュレーションするべき電気回路網を構成する複数の
回路要素の等価的な機能をそれぞれ備えた複数のコンポ
ーネントを、相互に接続して前記電気回路網のシミュレ
ーションモデルを構成する電気回路網シミュレータにお
いて、 前記電気回路網の接続分岐点を示すノードとこのノード
に接続される前記回路要素とを示す接続情報に基づき、
前記各コンポーネントの接続点を示す制御信号を出力す
る自動接続制御装置と、前記コンポーネントがそれぞれ
一端に接続された母線を有するマトリクス状の複数の母
線からなる自動接続マトリクスとを備え、 前記制御信号により前記母線相互の交点を選択的に接続
して前記コンポーネントを相互に接続することを特徴と
する電気回路網シミュレータの自動接続システム。
[Scope of Claims] An electric circuit that constitutes a simulation model of an electric circuit network by interconnecting a plurality of components each having equivalent functions of a plurality of circuit elements constituting an electric circuit network to be simulated. In the network simulator, based on connection information indicating a node indicating a connection branch point of the electrical circuit network and the circuit element connected to this node,
an automatic connection control device that outputs a control signal indicating a connection point of each component; and an automatic connection matrix consisting of a plurality of busbars in a matrix shape, each of which has a busbar to which each of the components is connected at one end; An automatic connection system for an electric circuit network simulator, characterized in that the components are connected to each other by selectively connecting the intersections of the busbars.
JP63007829A 1988-01-18 1988-01-18 Automatic connection system for electric network simulator Expired - Lifetime JPH0714255B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP63007829A JPH0714255B2 (en) 1988-01-18 1988-01-18 Automatic connection system for electric network simulator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP63007829A JPH0714255B2 (en) 1988-01-18 1988-01-18 Automatic connection system for electric network simulator

Publications (2)

Publication Number Publication Date
JPH01186117A true JPH01186117A (en) 1989-07-25
JPH0714255B2 JPH0714255B2 (en) 1995-02-15

Family

ID=11676486

Family Applications (1)

Application Number Title Priority Date Filing Date
JP63007829A Expired - Lifetime JPH0714255B2 (en) 1988-01-18 1988-01-18 Automatic connection system for electric network simulator

Country Status (1)

Country Link
JP (1) JPH0714255B2 (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0251324A (en) * 1988-08-12 1990-02-21 Kansai Electric Power Co Inc:The Automatic connector for electric network
JPH0373870A (en) * 1989-08-14 1991-03-28 Kansai Electric Power Co Inc:The Automatic connecting mechanism for electrical network simulator
JPH0373871A (en) * 1989-08-14 1991-03-28 Kansai Electric Power Co Inc:The Automatic connecting mechanism for electrical network simulator
JPH03256521A (en) * 1990-03-02 1991-11-15 Kansai Electric Power Co Inc:The System for driving control relay
JPH03256522A (en) * 1990-03-02 1991-11-15 Kansai Electric Power Co Inc:The System for confirming operation of control relay
CN110534000A (en) * 2019-09-03 2019-12-03 常熟理工学院 For the matrix form control circuit of electric fault point to be arranged

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56162431A (en) * 1980-05-16 1981-12-14 Matsushita Electric Works Ltd Pattern operating circuit for electromagnetic relay
JPS61232481A (en) * 1985-04-09 1986-10-16 株式会社日立製作所 Load interruption simulation

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56162431A (en) * 1980-05-16 1981-12-14 Matsushita Electric Works Ltd Pattern operating circuit for electromagnetic relay
JPS61232481A (en) * 1985-04-09 1986-10-16 株式会社日立製作所 Load interruption simulation

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0251324A (en) * 1988-08-12 1990-02-21 Kansai Electric Power Co Inc:The Automatic connector for electric network
JPH0373870A (en) * 1989-08-14 1991-03-28 Kansai Electric Power Co Inc:The Automatic connecting mechanism for electrical network simulator
JPH0373871A (en) * 1989-08-14 1991-03-28 Kansai Electric Power Co Inc:The Automatic connecting mechanism for electrical network simulator
JPH03256521A (en) * 1990-03-02 1991-11-15 Kansai Electric Power Co Inc:The System for driving control relay
JPH03256522A (en) * 1990-03-02 1991-11-15 Kansai Electric Power Co Inc:The System for confirming operation of control relay
CN110534000A (en) * 2019-09-03 2019-12-03 常熟理工学院 For the matrix form control circuit of electric fault point to be arranged

Also Published As

Publication number Publication date
JPH0714255B2 (en) 1995-02-15

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