JP2000023362A - Power system monitor and control system and recording medium with program recorded therein - Google Patents

Power system monitor and control system and recording medium with program recorded therein

Info

Publication number
JP2000023362A
JP2000023362A JP10199866A JP19986698A JP2000023362A JP 2000023362 A JP2000023362 A JP 2000023362A JP 10199866 A JP10199866 A JP 10199866A JP 19986698 A JP19986698 A JP 19986698A JP 2000023362 A JP2000023362 A JP 2000023362A
Authority
JP
Japan
Prior art keywords
monitoring
failure
recovery method
maintenance
failure recovery
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
JP10199866A
Other languages
Japanese (ja)
Inventor
Shunichi Habuka
俊一 羽深
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 JP10199866A priority Critical patent/JP2000023362A/en
Publication of JP2000023362A publication Critical patent/JP2000023362A/en
Pending legal-status Critical Current

Links

Classifications

    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • 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
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/20Systems supporting electrical power generation, transmission or distribution using protection elements, arrangements or systems
    • 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
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/50Systems or methods supporting the power network operation or management, involving a certain degree of interaction with the load-side end user applications
    • Y04S10/52Outage or fault management, e.g. fault detection or location

Landscapes

  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)
  • Supply And Distribution Of Alternating Current (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a monitor and controller for monitor and controlling of a power system, which analyzes a defect by itself when the defect is generated in itself and then specifies a defective component, checks whether the defective component is in stock or not, and arranges the personnels required for the replacement of the defective component, based on the database registered in advance through the network, and also provide a recording medium with the program recorded therein. SOLUTION: Relations between causes of defects and methods for settling the defects are registered in advance in a monitoring and controlling calculating equipment 1-2 in a power system monitoring and controlling system 1. When a defect appears, this system determines by itself (1-2-2) a method for settling the defect based on the registered database and then notifies a maintenance system 5 of which component is defective, and requests it to check whether or not the component is in stock and to arrange the personnels required for replacement of the defective component.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、電力系統を監視、
制御する監視制御装置とその装置を保守するための保守
装置とをネットワークを介して接続すると共に監視制御
装置を保守するためのプログラムを記録した記録媒体に
関する。
BACKGROUND OF THE INVENTION The present invention relates to a system for monitoring a power system,
The present invention relates to a recording medium in which a monitoring control device to be controlled and a maintenance device for maintaining the device are connected via a network and a program for maintaining the monitoring control device is recorded.

【0002】[0002]

【従来の技術】電力系統を監視制御する監視制御装置に
異常が発生した場合、異常内容を認識し、改修を行うま
でには、次の様な段階を要求している。 (1)異常発生の通知 これは、通常、装置のオペレータが異常を認識し、装置
のメンテナンスを行うサービスセンターや、その他のキ
ーパーソンに電話連絡をすることにより行われる。
2. Description of the Related Art When an abnormality occurs in a monitoring control device for monitoring and controlling an electric power system, the following steps are required until the contents of the abnormality are recognized and repaired. (1) Notification of occurrence of abnormality This is usually performed by an operator of the apparatus recognizing the abnormality and making a telephone call to a service center that performs maintenance of the apparatus or another key person.

【0003】(2)異常の詳細の把握 上記(1)の通知により、サービスセンターの担当者あ
るいはキーパーソンが装置のオペレータに対して事情を
確認したり、ネットワークを接続して、装置の内部状態
を確認し、発生した異常を認識する。
(2) Grasping the details of the abnormality By the notification of the above (1), the person in charge of the service center or the key person checks the situation with the operator of the apparatus, connects the network, and checks the internal state of the apparatus. Confirm that the abnormality occurred.

【0004】(3)故障部品の把握と手配 上記(2)で状況が把握でき、その異常がハードウェア
の交換で復旧できる場合、担当者は交換用の部品の有無
と交換の為に派遣する要員の確保を実施する。 (4)交換作業の実施と復旧 上記(3)で確保した部品及び要員により、監視制御装
置の故障を復旧する。
(3) Grasping and Arrangement of Faulty Parts If the situation can be grasped in (2) above and the abnormality can be recovered by replacing the hardware, the person in charge dispatches for the presence or absence of replacement parts and for replacement. Secure personnel. (4) Execution and recovery of replacement work The failure of the monitoring and control device is recovered by the parts and personnel secured in (3) above.

【0005】[0005]

【発明が解決しようとする課題】上記の様に、電力系統
を監視制御する監視制御装置に故障が発生した場合、故
障状態を把握するまでに、故障の連絡、事情の確認、部
品や要員の手配など、人間系による段階が多いため、連
絡誤りや誤解等により、正確な伝達ができなかったり、
対処に時間を要したりする。
As described above, when a failure occurs in the monitoring and control device that monitors and controls the power system, the failure is reported, the situation is confirmed, parts and personnel are checked before the failure state is grasped. Because there are many stages of human systems such as arrangements, accurate communication can not be done due to communication errors or misunderstandings,
Take time to deal with it.

【0006】本発明は、上記課題を解決するためになさ
れたものであり、電力系統を監視制御する監視制御装置
に故障が発生した場合に、故障内容を自己診断し、故障
した部品の特定、故障した部品の在庫の確認、部品交換
に必要な要因の手配を、ネットワークを通じて予め登録
されたデータベースに基づき、実施する監視制御装置と
そのプログラムを記録した記録媒体を提供することを目
的としている。
SUMMARY OF THE INVENTION The present invention has been made to solve the above-mentioned problems. When a failure occurs in a monitoring control device for monitoring and controlling an electric power system, a self-diagnosis of the content of the failure is performed to specify a failed component. It is an object of the present invention to provide a monitoring control device that executes inventory confirmation of a failed component and arrangement of factors necessary for component replacement based on a database registered in advance through a network and a recording medium recording the program thereof.

【0007】[0007]

【課題を解決するための手段】本発明の[請求項1]に
係る電力系統監視制御システムは、電力系統を監視制御
する1つ以上の監視制御装置と、この監視制御装置にネ
ットワークを介して接続された1つ以上の保守システム
で構成された電力系統監視制御システムであって、監視
制御装置で故障が発生した際に監視制御装置の故障状態
を保存し、保存された故障状態と、予め登録した故障状
態を比較し、一致する故障状態がある場合、保守装置に
対して、監視制御装置の故障部位を通知するよう構成し
た。
A power system monitoring and control system according to claim 1 of the present invention comprises at least one monitoring and control device for monitoring and controlling a power system, and the monitoring and control device is connected to the monitoring and control device via a network. A power system monitoring and control system including one or more connected maintenance systems, wherein when a failure occurs in the monitoring and control device, a failure state of the monitoring and control device is stored, and the stored failure state is stored in advance. The registered failure states are compared, and if there is a coincident failure state, the maintenance unit is notified of the failure part of the monitoring and control device.

【0008】従って、監視制御装置の故障時に、運転員
と故障状態について事情を聞いたり、装置に残された故
障状態の記録を確認することなく、予め登録した故障状
態によって判定することで、正確で迅速な対応を行うこ
とができる。
[0008] Therefore, when a failure occurs in the monitoring and control device, it is possible to accurately determine the failure state by preliminarily registering the failure state without asking the operator about the failure state or checking the record of the failure state left in the device. And prompt response.

【0009】本発明の[請求項2]に係る電力系統監視
制御システムは、[請求項1]において通信装置を介し
て接続された1つ以上の保守装置から、故障復旧に必要
な部品の在庫の情報や、保守員の交換可能な部品の技量
と、スケジュール等を登録することが可能であって、監
視制御部に故障が発生した際に、故障装置に対応した部
品の存在箇所を特定し、部品の交換可能な技量を持った
保守員のアサインを行い、保守装置に対して自動的に部
品の手配と保守員のアサインを通知する様に構成した。
従って、部品の存在する倉庫や、保守員のアサインを正
確かつ迅速に行うことが可能である。
According to a second aspect of the present invention, there is provided a power system monitoring and control system according to the first aspect, wherein at least one maintenance device connected via a communication device stores inventories of parts necessary for failure recovery. Information, the skills of replaceable parts by maintenance personnel, schedules, etc. can be registered, and when a failure occurs in the monitoring control unit, the location of the part corresponding to the failed device is specified. In this configuration, maintenance personnel having the skills to replace parts are assigned, and the maintenance device is automatically notified of the arrangement of parts and the maintenance staff assignment.
Therefore, it is possible to accurately and quickly assign a warehouse where parts exist and a maintenance person.

【0010】本発明の[請求項3]に係る電力系統監視
制御システムは、[請求項2]において保守装置に対し
て自動的に部品の手配と保守員のアサインを通知すると
ともに、部品の倉庫や保守員の持つ移動式電話に対し
て、電話をかけることで部品の手配や、保守員のアサイ
ンの結果を通知する様に構成した。従って、部品の倉庫
の保守システムが未稼動時や、保守員が外出時にも迅速
に連絡を行うことが可能である。
The power system monitoring and control system according to claim 3 of the present invention automatically notifies the maintenance device of the arrangement of parts and the assignment of maintenance personnel in claim 2 and stores the parts in a warehouse. The system is configured so that it can be used to arrange parts and notify the result of the maintenance staff assignment by making a call to a mobile phone owned by the maintenance staff. Therefore, even when the maintenance system of the parts warehouse is not operating, or when the maintenance person goes out, it is possible to quickly contact the maintenance system.

【0011】本発明の[請求項4]に係る電力系統監視
制御システムは、[請求項3]において監視制御装置の
動作状態や、運転員の操作内容を常時保存しておき、監
視制御装置の故障内容を把握する際に保存された過去の
動作状態や、過去の運転員の操作内容と、故障発生時の
状態に基づき故障内容の判定を行う構成とした。従っ
て、故障内容を判定する為の条件が増加し、より正確な
判定を行うことが可能である。
According to a fourth aspect of the present invention, in the power system monitoring and control system according to the third aspect of the present invention, the operation state of the monitoring and control device and the operation contents of the operator are always stored, and The configuration is such that the failure content is determined based on the past operation state stored when grasping the failure content, the past operation contents of the operator, and the state at the time of the failure occurrence. Therefore, the conditions for determining the details of the failure increase, and more accurate determination can be performed.

【0012】本発明の[請求項5]に係る電力系統監視
制御システムは、[請求項4]において監視制御装置に
現在の異常状態や保存された過去の動作状態や、運転員
の操作内容に基づいて監視制御装置の故障内容を判定で
きない場合、予め登録した故障内容の判定を行うことの
できる有識者に対して電話をかけることで情報を送信す
る構成とした。従って、故障内容を自動的に判定するこ
とができない場合でも、有識者による判断を行うことで
迅速な故障判定を行うことが可能である。
According to a fifth aspect of the present invention, a power system monitoring and control system according to the fourth aspect of the present invention is provided in which a current abnormal state, a past operation state stored in the monitoring and control apparatus, and an operation content of an operator. If the failure content of the monitoring control device cannot be determined based on the information, the information is transmitted by making a telephone call to an expert who can determine the failure content registered in advance. Therefore, even when the failure content cannot be automatically determined, it is possible to perform a quick failure determination by making a determination by an expert.

【0013】本発明の[請求項6]に係る電力系統監視
制御システムは、[請求項5]において監視制御装置
が、部品の有無や保守員の技量やスケジュールに基づき
最適な保守装置を選択した際、故障復旧を行った場合に
必要となる部品の価格や保守員の旅費、日当等の人件費
に基づき、故障復旧に要する金額を算出し、電力系統監
視制御装置のオペレータに自動的に通知することのでき
る構成とした。
According to a sixth aspect of the present invention, in the power system monitoring and control system according to the fifth aspect, the monitoring and control device selects an optimal maintenance device based on the presence or absence of parts, the skills and schedule of maintenance personnel. At the time of failure recovery, the amount required for failure recovery is calculated based on the price of parts required for repairing the fault, the travel expenses of maintenance personnel, personnel expenses such as daily allowance, and the operator of the power system monitoring and control device is automatically The configuration allows notification.

【0014】従って、故障復旧に要する金額を迅速に計
算することで金額が不明であったり、金額の行き違いに
より故障復旧作業を行うことができなくなるようなこと
が無くなり、迅速な故障復旧を行うことが可能である。
[0014] Therefore, by quickly calculating the amount of money required for the failure recovery, the amount of money is not known or the failure recovery work cannot be performed due to a wrong amount of money. Is possible.

【0015】本発明の[請求項7]に係る電力系統監視
制御システムは、電力系統を監視制御する1つ以上の監
視制御装置と、この監視制御装置に通信装置を介して接
続された1つ以上の保守装置で構成された電力系統監視
制御システムであって、監視制御装置で故障が発生した
際に監視制御装置の状態を保存し、保守システムに対し
て、監視制御装置の故障状態を通知し、保守装置におい
て、通知された故障状態と、予め登録した故障状態を比
較し、一致する故障状態がある場合、故障部位を表示す
るよう構成した。
A power system monitoring and control system according to claim 7 of the present invention includes at least one monitoring and control device for monitoring and controlling a power system, and one or more monitoring and control devices connected to the monitoring and control device via a communication device. A power system monitoring and control system including the above maintenance devices, which saves the status of the monitoring and control device when a failure occurs in the monitoring and control device, and notifies the maintenance system of the failure status of the monitoring and control device. Then, in the maintenance device, the notified failure state is compared with a failure state registered in advance, and when there is a matching failure state, a failure part is displayed.

【0016】従って、監視制御装置の故障時に、運転員
と故障状態について事情を聞いたり、装置に残された故
障状態の記録を確認することなく、予め登録した故障状
態によって判定することで、正確で迅速な対応を行うこ
とができる。
Therefore, when a failure occurs in the monitoring and control device, the operator can accurately determine the failure state without having to ask the operator about the failure state or check the record of the failure state left in the apparatus. And prompt response.

【0017】本発明の[請求項8]に係る記録媒体は、
[請求項1]〜[請求項6]で述べた電力系統監視制御
システムの機能を実行するためのプログラムを記録した
ものである。
The recording medium according to claim 8 of the present invention is:
A program for executing the functions of the power system monitoring and control system described in [Claim 1] to [Claim 6] is recorded.

【0018】[0018]

【発明の実施の形態】(第1の実施の形態)図1は、本
発明の第1の実施の形態を示す構成図、図2は、本実施
の形態の故障復旧方法判定用データベース1−2−12
の構成例図、図3は、本実施の形態の故障復旧方法判定
手段1−2−2のフロー図の一例を示す図である。
DESCRIPTION OF THE PREFERRED EMBODIMENTS (First Embodiment) FIG. 1 is a block diagram showing a first embodiment of the present invention, and FIG. 2 is a failure recovery method determining database 1-1 of the present embodiment. 2-12
FIG. 3 is a diagram showing an example of a flowchart of the failure recovery method determining means 1-2-2 of the present embodiment.

【0019】先ず、図1を用いて本発明のシステム全体
から説明する。本発明の電力系統監視制御システムは、
監視制御装置1、後述する通信装置6及び保守装置5か
ら構成される。1は電力系統を監視制御する監視制御装
置であり、ソフトウェア保存部1−1と、計算機のCP
U等で構成された監視制御演算部1−2と、システムマ
ンマシンインターフェース(MMI)装置1−3と、周
辺装置1−4とから構成される。この監視制御装置1は
実際には複数個(n)用意されているが、説明の便宜上
1個のみ示している。前記周辺装置1−4は、電力系統
の運用状態を監視するための系統監視盤等で構成されて
いる。
First, the entire system of the present invention will be described with reference to FIG. The power system monitoring and control system of the present invention includes:
The monitoring and control device 1 includes a communication device 6 and a maintenance device 5 to be described later. Reference numeral 1 denotes a monitoring control device that monitors and controls the power system, and includes a software storage unit 1-1 and a computer CP.
It comprises a monitoring control operation unit 1-2 composed of a U or the like, a system man-machine interface (MMI) device 1-3, and a peripheral device 1-4. Although a plurality (n) of the monitoring control devices 1 are actually prepared, only one is shown for convenience of explanation. The peripheral device 1-4 includes a system monitoring panel for monitoring the operation state of the power system.

【0020】2−1〜2−nは前記複数の監視制御装置
1の夫々に接続されたWAN通信装置であり、WAN3
経由通信を行う。WAN通信装置4−1〜4−mは、保
守装置5に接続されたWAN通信装置である。なお、こ
れらWAN通信装置2−1〜2−n、WAN3及びWA
N通信装置4−1〜4−mを総称して以降単に通信装置
6と呼ぶことにする。
Reference numerals 2-1 to 2-n denote WAN communication devices connected to the plurality of supervisory control devices 1, respectively.
Perform via communication. The WAN communication devices 4-1 to 4-m are WAN communication devices connected to the maintenance device 5. Note that these WAN communication devices 2-1 to 2-n, WAN3 and WA
The N communication devices 4-1 to 4-m are hereinafter collectively simply referred to as a communication device 6.

【0021】5は保守装置であり、5−1は保守装置5
のソフトウェア保存部、5−2は計算機のCPU等で構
成された保守装置演算部、5−3はシステムMMI装
置、5−4は周辺装置である。
5 is a maintenance device, and 5-1 is a maintenance device 5.
5-2, a maintenance device operation unit composed of a CPU or the like of a computer; 5-3, a system MMI device; 5-4, a peripheral device;

【0022】次に、監視制御演算部1−2及び保守装置
5の詳細を説明する。先ず、監視制御演算部1−2にお
いて、1−2−1は故障発生検出手段であり、監視制御
装置1内に故障が発生した場合に通知を受けたり、監視
制御装置1内を定周期に監視することにより故障の検出
を行っている。発生した故障の状態情報は、故障復旧方
法判定のために、一時的に故障状態保存部1−2−11
に保存される。
Next, details of the monitoring control operation section 1-2 and the maintenance device 5 will be described. First, in the supervisory control operation unit 1-2, 1-2-1 is a failure occurrence detecting means, which receives a notification when a failure occurs in the supervisory control device 1 or periodically sends a signal to the supervisory control device 1 periodically. Failure is detected by monitoring. The status information of the fault that has occurred is temporarily stored in a fault status storage unit 1-2-11 for determining a fault recovery method.
Is stored in

【0023】1−2−2は故障復旧方法判定手段であ
り、故障発生検出手段1−2−1が故障を検出した場合
に起動され、故障状態保存部1−2−11に一時的に保
存された故障状態情報と、予め故障復旧方法判定用デー
タベース1−2−12に登録されている故障復旧方法判
定内容とを照合して、故障復旧方法の判定を行う。1−
2−3は故障復旧方法を保守装置5に通知するための通
知手段であり、故障復旧方法判定手段1−2−2で判定
した復旧方法を、通信装置6に送信する。
Reference numeral 1-2-2 denotes a failure recovery method determining means, which is activated when the failure occurrence detecting means 1-2-1 detects a failure, and temporarily stores the failure state in the failure state storage section 1-2-11. The determined failure state is compared with the failure recovery method determination contents registered in advance in the failure recovery method determination database 1-2-12 to determine the failure recovery method. 1-
Reference numeral 2-3 denotes a notification unit for notifying the maintenance device 5 of the failure recovery method, and transmits the recovery method determined by the failure recovery method determination unit 1-2-2 to the communication device 6.

【0024】次に、保守装置の演算部5−2において、
5−2−1は受信手段であり、通知手段1−2−3によ
って送信された故障復旧方法に関するデータを通信装置
6を通して受信する。5−2−2は故障復旧方法を表示
するための表示手段であり、受信手段5−2−1から故
障復旧方法に関するデータを入力すると故障復旧方法に
関する信号を出力し、システムMMI装置5−3や周辺
装置5−4に表示する。
Next, in the arithmetic unit 5-2 of the maintenance device,
Reference numeral 5-2-1 denotes a receiving unit, which receives the data regarding the failure recovery method transmitted by the notifying unit 1-2-3 through the communication device 6. Reference numeral 5-2-2 denotes display means for displaying a failure recovery method. When data relating to the failure recovery method is input from the receiving means 5-2-1, a signal relating to the failure recovery method is output, and the system MMI device 5-3 is displayed. And the peripheral device 5-4.

【0025】図2は、故障要因に基づき、故障復旧方法
を判定するために用いられる故障判定用データベース1
−2−12の一例を示し、故障要因a〜nの発生状態を
示す数値に基づき、故障復旧方法A〜Mを判定する方法
である。故障復旧方法Aから順に現在の故障要因の発生
状態を比較し、一致したものをその故障の復旧方法と定
める。なお表中の「1」は、要因の発生中を意味し、
「0」は発生なしを意味し、そして「−」は要因の発生
中あるいは発生なしとは無関係であることを意味する。
FIG. 2 shows a failure determination database 1 used to determine a failure recovery method based on a failure factor.
-12-12 is a method of determining failure recovery methods A to M based on numerical values indicating occurrence states of failure factors a to n. The current state of occurrence of the failure factor is compared in order from the failure recovery method A, and a match is determined as the recovery method of the failure. Note that "1" in the table means that the factor is occurring,
"0" means no occurrence, and "-" means independent of whether the factor is occurring or not occurring.

【0026】図3は、故障復旧方法判定手段1−2−2
の機能を表すフロー図の一例であり、故障発生時、故障
発生検出手段1−2−1より起動され、ステップST1
で一時保存された故障状態情報を故障状態保存部1−2
−11より読み出しを行う。
FIG. 3 shows a failure recovery method determining means 1-2-2.
Is an example of a flow chart showing the function of step ST1.
The failure state information temporarily stored in the storage unit is stored in the failure state storage unit 1-2.
Reading is performed from -11.

【0027】ステップST2では故障復旧方法判定の為
のループカウンタl(エル)を1にセットし、ステップ
ST3でl(エル)番目に該当する故障復旧方法を故障
復旧方法判定用データベース1−2−12から読み出
し、ステップST4で故障状態の条件が一致しているか
否かを判定する。一致している場合はステップST5で
故障復旧方法通知手段1−2−3を起動する。
In step ST2, a loop counter l (ell) for judging a fault recovery method is set to 1, and in step ST3, the fault recovery method corresponding to the l (ell) -th is a fault recovery method judgment database 1-2. 12 and determines in step ST4 whether or not the condition of the failure state matches. If they match, the failure recovery method notifying means 1-2-3 is activated in step ST5.

【0028】しかし、ステップST4で故障状態の条件
が一致しない場合は、ステップST6で故障復旧方法判
定用データベースに登録してある故障復旧方法を全て照
合したか否を判定し、まだすべての照合が終っていない
場合、ステップST7でループカウンタをカウントアッ
プして、ステップST3へ戻って再びステップST4で
故障状態の条件が一致しているか否か判定する。ステッ
プST6でデータベースに照合すべき故障復旧方法がな
くなった場合は、ステップST8で故障内容不明として
一連の動作を終了する。
However, if the failure condition does not match in step ST4, it is determined in step ST6 whether all the failure recovery methods registered in the failure recovery method determination database have been collated. If not, the loop counter is counted up in step ST7, the process returns to step ST3, and it is determined again in step ST4 whether or not the condition of the fault condition is matched. If there is no more failure recovery method to be collated in the database in step ST6, a series of operations is terminated in step ST8 assuming that the details of the failure are unknown.

【0029】以上述べたように、本実施の形態によれば
監視制御装置に故障が発生した場合、故障状態に応じて
故障復旧方法を自動的に判定し、故障復旧方法を保守装
置に対して自動的に送信するため、故障発生時に装置の
オペレータが異常を認識し、装置のメンテナンスを行う
サービスセンターやその他のキーパーソンに電話連絡す
ることを不要とし、その通知により、サービスセンター
の担当者、あるいはキーパーソンが装置のオペレータに
対して事情を確認したり、ネットワークを接続して装置
の内部状態を確認し、発生した異常を認識し、故障部位
を判定し、故障部品の交換を指示することを不要とする
ことが可能となる。このことにより迅速で正確な故障復
旧処置が可能となる。
As described above, according to the present embodiment, when a failure occurs in the monitoring and control device, a failure recovery method is automatically determined according to the failure state, and the failure recovery method is applied to the maintenance device. The automatic transmission eliminates the need for the operator of the equipment to recognize the abnormality in the event of a failure and to call the service center or other key persons for maintenance of the equipment. Alternatively, a key person can check the situation with the operator of the equipment, connect the network to check the internal state of the equipment, recognize the abnormality that has occurred, determine the location of the failure, and instruct the replacement of the failed part. Can be eliminated. This enables quick and accurate failure recovery measures.

【0030】(第2の実施の形態)図4は第2の実施の
形態を示す構成図である。図4において図1と同一機能
部分については同一符号を付して説明を省略する。先
ず、理解しやすいように、保守装置演算部5−2から説
明する。5−2−3は新たに設けられた保守装置情報設
定手段であり、システムMMI装置5−3から部品の在
庫情報や保守員の技量及びスケジュール情報をそれぞれ
入力し、部品の在庫保存部5−2−11や保守員の技量
及びスケジュール保存部5−2−12に保存する。
(Second Embodiment) FIG. 4 is a configuration diagram showing a second embodiment. 4, the same functional portions as those in FIG. 1 are denoted by the same reference numerals, and description thereof will be omitted. First, the maintenance device calculation unit 5-2 will be described for easy understanding. Reference numeral 5-2-3 denotes a newly provided maintenance device information setting unit which inputs component stock information and maintenance staff skill and schedule information from the system MMI device 5-3, and stores the component stock storage unit 5- 2-11 and the skills of the maintenance personnel and the schedule storage unit 5-2-12.

【0031】5−2−4は保守装置5の情報送信手段で
あり、保守装置5の情報設定手段5−2−3によって、
部品の在庫や保守員の技量及びスケジュールが保存され
た後に、その部品の在庫保存部5−2−11、保守員の
技量及びスケジュール保存部5−2−12に保存された
情報を、通信装置6を介して、監視制御演算部1−2に
送信する。
Reference numeral 5-2-4 denotes an information transmitting unit of the maintenance device 5, and the information setting unit 5-2-3 of the maintenance device 5
After the parts inventory and the skills and schedule of the maintenance personnel are stored, the information stored in the inventory storage unit 5-2-11 and the skills and schedule storage unit 5-2-12 of the parts is transmitted to the communication device. 6 and transmitted to the monitoring control operation unit 1-2.

【0032】次に、監視制御演算部1−2において、1
−2−4は、通信装置6を介して複数の保守装置演算部
5−2から送信されてくる部品の在庫情報、保守員の技
量及びスケジュール情報を受信する受信手段であり、こ
れらの受信情報のうち部品の在庫情報は倉庫の部品の在
庫保存部1−2−13に保存し、保守員の技量及びスケ
ジュール情報は保守員の技量及びスケジュール保存部1
−2−14に保存する。
Next, in the monitoring control operation section 1-2, 1
-2-4 is a receiving means for receiving the stock information of the parts, the skills of the maintenance staff, and the schedule information transmitted from the plurality of maintenance device arithmetic units 5-2 via the communication device 6, and the received information. The stock information of the parts is stored in the stock storage section 1-2-13 of the parts in the warehouse, and the skills and schedule information of the maintenance staff are stored in the skills and schedule storage section 1 of the maintenance staff.
-2-14.

【0033】1−2−5は部品及び担当者の決定手段で
あり、故障復旧方法判定手段1−2−2が故障復旧方法
判定をした後に起動され、故障復旧に必要な部品が存在
する倉庫と、故障復旧を行うことのできる技量を持ち最
短時間でアサイン可能な保守員を、前記倉庫の部品の在
庫保存部1−2−13に保存された情報及び保守員の技
量及びスケジュール保存部1−2−14に保存された情
報とを用いて決定する。そして、その決定結果を通知手
段1−2−3から通信装置6を介して該当する保守装置
5に通知する。
1-2-5 is a means for determining parts and persons in charge, which is activated after the failure recovery method determining means 1-2-2 determines the failure recovery method, and is a warehouse in which parts necessary for failure recovery exist. And the maintenance staff who has the skills required to perform the failure recovery and can be assigned in the shortest time can be stored in the inventory storage unit 1-2-13 of the parts in the warehouse and the maintenance staff's skills and schedule storage unit 1 2-2-14 is determined using the information stored. Then, the determination result is notified from the notification unit 1-2-3 to the corresponding maintenance device 5 via the communication device 6.

【0034】本実施の形態によれば、監視制御装置1に
故障が発生した場合、複数の倉庫や部品交換実施可能な
技量をもった複数の保守員のうち、最短期間でアサイン
可能な保守員を自動的に判定するため、装置のオペレー
タより通知を受けたサービスセンターの担当者やその他
のキーパーソンが部品の存在する倉庫や、部品交換実施
可能な技量をもった保守員のうち、最短期間でアサイン
可能な保守員を探したりすることが不要となる。このこ
とにより迅速で正確な故障復旧処置が可能となる。
According to the present embodiment, when a failure occurs in the monitoring and control apparatus 1, of a plurality of warehouses and a plurality of maintenance personnel having skills capable of performing component replacement, maintenance personnel who can be assigned in the shortest time period Service center personnel and other key persons who are notified by the operator of the equipment automatically determine the It is not necessary to search for a maintenance person who can be assigned by the user. This enables quick and accurate failure recovery measures.

【0035】(第3の実施の形態)図5は第3の実施の
形態を示す構成図である。図5において図4と同一機能
部分については、同一符号を付して説明を省略する。監
視制御演算部1−2において、1−2−6は倉庫及び保
守員へ自動的に電話をかける手段であり、部品及び担当
者の決定手段1−2−5で部品及び担当者を決定した
後、後述する周辺装置を介して、決定した倉庫へ電話を
かけ、かつ保守員の持つ移動式電話器に対しても自動的
に電話をかける。
(Third Embodiment) FIG. 5 is a block diagram showing a third embodiment. 5, the same reference numerals are given to the same functional portions as those in FIG. 4, and the description will be omitted. In the monitoring control calculation section 1-2, 1-2-6 is a means for automatically making a telephone call to the warehouse and maintenance personnel, and the part and the person in charge are determined by the part and person in charge determining means 1-2-5. Thereafter, a telephone call is made to the determined warehouse via a peripheral device to be described later, and a mobile telephone held by a maintenance person is automatically telephoned.

【0036】1−5は周辺装置の一つであって、電話回
線1−6とのI/F装置である。また、1−7−1〜1
−7−kは各倉庫の電話器、1−8−1〜1−8−j
は、保守員のもつ移動電話器である。なお、電話をかけ
る代わりにファクシミリや、電子メールで倉庫、保守員
で連絡するようにしても良いし、これらを併用しても勿
論良い。
Reference numeral 1-5 denotes one of the peripheral devices, which is an I / F device with the telephone line 1-6. Moreover, 1-7-1 to 1
-7-k is a telephone in each warehouse, 1-8-1 to 1-8-j
Is a mobile phone owned by a maintenance person. Instead of making a telephone call, a facsimile or an e-mail may be used to notify the warehouse or maintenance staff, or these may be used in combination.

【0037】本実施の形態によれば監視制御装置1に故
障が発生した場合、決定した倉庫の電話や保守員のもつ
移動式電話器に対して自動的に電話をかけるため、保守
装置が停止していたり、保守装置の監視員が不在であっ
た場合にも、ただちに電話器等を通して連絡を行うこと
が可能となる。このことにより迅速な故障復旧処置が可
能となる。
According to the present embodiment, when a failure occurs in the monitoring and control device 1, the telephone for the determined warehouse or the mobile telephone owned by the maintenance staff is automatically called, so that the maintenance device is stopped. Even if the maintenance person is not working or the monitoring device of the maintenance device is absent, it is possible to immediately communicate via the telephone or the like. This enables quick failure recovery.

【0038】(第4の実施の形態)図6は第4の実施の
形態を示す構成図である。図6において図5と同一機能
部分については、同一符号を付して説明を省略する。図
6の監視制御演算部1−2において、1−2−7は監視
制御装置1の動作状態や運転員の操作内容を保存する保
存手段であり、監視制御装置1の動作状態の変化時や、
運転員が操作を行ったタイミングで動作したり、定周期
で動作して、監視制御装置1の動作状態や運転員の操作
内容の保存部1−2−15に保存する。
(Fourth Embodiment) FIG. 6 is a configuration diagram showing a fourth embodiment. 6, the same functional portions as those in FIG. 5 are denoted by the same reference numerals, and description thereof will be omitted. In the monitoring control calculation unit 1-2 of FIG. 6, 1-2-7 is a storage unit for storing the operation state of the monitoring control apparatus 1 and the operation contents of the operator. ,
It operates at the timing when the operator performs the operation, or operates at a fixed period, and saves the operation state of the monitoring and control device 1 and the operation content of the operator in the storage unit 1-2-15.

【0039】本実施の形態の場合、故障復旧方法を決定
する故障復旧方法判定用データベース1−2−12の故
障要因を増加し、発生状態に「過去何時間以内に発生し
ていた」等の条件を追加する。この結果、監視制御装置
1に故障が発生した場合、図5の実施の形態に比べ、よ
り詳細な故障復旧方法を判定することが可能となる。こ
のことにより、正確な故障復旧処置が可能となる。
In the case of the present embodiment, the number of failure factors in the failure recovery method determination database 1-2-12 for determining a failure recovery method is increased, and the occurrence state is changed to, for example, "how many hours have occurred in the past". Add a condition. As a result, when a failure occurs in the monitoring control device 1, it is possible to determine a more detailed failure recovery method as compared with the embodiment of FIG. As a result, an accurate failure recovery procedure can be performed.

【0040】(第5の実施の形態)図7は第5の実施の
形態を示す構成図である。図7において図6と同一機能
部分については、同一符号を付して説明を省略する。1
−9−1〜1−9−iはキーマンのもつ移動電話器であ
る。1−2−6′は倉庫及び保守員へ電話をかける手段
であるが、故障内容が不明の場合はその旨をキーマンに
電話をかける手段である。図7で故障復旧方法の判定手
段1−2−2のフロー図の例は図8に示す。
(Fifth Embodiment) FIG. 7 is a configuration diagram showing a fifth embodiment. 7, the same functional portions as those in FIG. 6 are denoted by the same reference numerals, and description thereof will be omitted. 1
Reference numerals 9-1 to 1-9-i denote mobile phones owned by Keyman. 1-2-6 'is a means for making a telephone call to the warehouse and maintenance personnel, but is a means for making a call to a keyman when the details of the failure are unknown. FIG. 8 shows an example of a flowchart of the failure recovery method determining means 1-2-2 in FIG.

【0041】図8において図3と同一部分については、
同一符号を付して説明を省略する。ステップST8で故
障内容が不明の場合、ステップST9で故障内容不明と
して故障復旧方法通知手段を起動する。
In FIG. 8, the same parts as in FIG.
The same reference numerals are given and the description is omitted. If the failure content is unknown in step ST8, the failure recovery method notifying means is activated in step ST9 as failure content unknown.

【0042】本実施の形態によれば、監視制御装置1に
故障が発生し、故障内容が不明であった場合、キーマン
に対して故障内容が不明である旨の連絡を電話を通して
行うことが可能となる。このことにより、故障内容が不
明の場合もそのまま放置されたりすることなく、迅速な
対応が可能となる
According to the present embodiment, when a failure occurs in the monitoring control device 1 and the details of the failure are unknown, it is possible to notify the keyman that the details of the failure are unknown through the telephone. Becomes As a result, even if the content of the failure is unknown, quick response is possible without being left as it is.

【0043】(第6の実施の形態)図9は第6の実施の
形態を示す構成図である。図9において図7と同一機能
部分については、同一符号を付して説明を省略する。保
守装置5において、5−2−5は故障復旧金額算出手段
であり、受信手段5−2−1が故障復旧方法に関する情
報を受信すると起動されるように構成されている。5−
2−13は部品、人件費単価保存部であり、予めこれら
保守部品単価や保守に要する人件費単価を保存してい
る。
(Sixth Embodiment) FIG. 9 is a configuration diagram showing a sixth embodiment. In FIG. 9, the same components as those in FIG. In the maintenance device 5, 5-2-5 is a failure recovery amount calculation means, which is configured to be activated when the receiving means 5-2-1 receives information on the failure recovery method. 5-
Reference numeral 2-13 denotes a part / labor cost unit price storage unit which stores in advance the unit cost of maintenance parts and the unit cost of labor cost required for maintenance.

【0044】5−2−14は故障復旧金額保存部であ
る。以上の新規追加構成において、受信手段5−2−1
が故障復旧方法に関する情報を受信すると、故障復旧金
額算出手段5−2−5を起動させる。故障復旧金額算出
手段5−2−5は受信した当該故障復旧方法情報に基づ
いて、部品、人件費単価保存部5−2−13に保存され
た単価データを取り込んで故障復旧金額を算出し、この
算出データを故障復旧金額保存部5−2−14に保存す
る。
Reference numeral 5-2-14 denotes a failure recovery amount storage unit. In the above newly added configuration, the receiving means 5-2-1
Receives the information on the failure recovery method, it activates the failure recovery amount calculation means 5-2-5. Based on the received failure recovery method information, the failure recovery amount calculating means 5-2-5 fetches the unit price data stored in the parts and labor unit price storage unit 5-2-13 to calculate a failure recovery amount, This calculation data is stored in the failure recovery amount storage unit 5-2-14.

【0045】前記故障復旧金額算出手段5−2−5はそ
の後保守装置情報送信手段5−2−4を起動することに
より、故障復旧金額保存部5−2−14に保存された故
障復旧金額を、通信装置6を経由し監視制御演算部1−
2に送信する。一方、監視制御演算部1−2において、
1−2−8は故障復旧金額表示手段であり、保守装置情
報受信手段1−2−4が故障復旧金額を受信すると動作
指令が与えられ、システムMMI 装置1−3に故障復旧金
額を表示する。
The failure restoration amount calculating means 5-2-5 thereafter activates the maintenance device information transmitting means 5-2-4 to thereby calculate the failure restoration amount stored in the failure restoration amount storage section 5-2-14. , Via the communication device 6, the monitoring control operation unit 1-
Send to 2. On the other hand, in the monitoring control operation unit 1-2,
1-2-8 is a failure restoration amount display means. When the maintenance device information receiving means 1-2-4 receives the failure restoration amount, an operation command is given, and the failure restoration amount is displayed on the system MMI device 1-3. .

【0046】以上述べた本実施の形態によれば、監視制
御装置1が、部品の有無や保守員の技量やスケジュール
に基づき最適な保守システムを選択した際、故障復旧を
行った場合に必要となる部品の価格や保守員の旅費、日
当等の人件費に基づき、故障復旧に要する金額を算出
し、監視制御装置1のオペレータに自動的に通知するこ
とができ、故障復旧に要する金額を迅速に計算すること
ができる為、金額が不明であったり、金額の行き違いに
より故障復旧作業を行うことができなくなるようなこと
が無くなり、迅速な故障復旧を行うことが可能となる。
According to the above-described embodiment, when the monitoring and control device 1 selects the most appropriate maintenance system based on the presence or absence of parts and the skills and schedule of maintenance personnel, it is necessary when the failure recovery is performed. The amount required for failure recovery is calculated based on the price of parts, labor costs such as maintenance costs for personnel, daily allowances, etc., and the operator of the monitoring and control device 1 can be automatically notified. Since the calculation can be performed quickly, it is possible to eliminate the possibility that the amount of money is not known or that the failure recovery work cannot be performed due to a wrong amount of money, and that the failure can be quickly recovered.

【0047】(第7の実施の形態)図10は、本発明の
第7の実施の形態の機能ブロック図を示す。本実施の形
態は、図1の監視制御演算部1−2にあった故障復旧方
法判定手段1−2−2、故障状態保存部1−2−11及
び故障復旧方法判定用データベース1−2−12の機能
をそっくり保守装置演算部5−2に移したものである
が、符号は新たに5−2−7、5−2−15及び5−2
−16を付けている。
(Seventh Embodiment) FIG. 10 shows a functional block diagram of a seventh embodiment of the present invention. In the present embodiment, the failure recovery method determination means 1-2-2, the failure state storage unit 1-2-11, and the failure recovery method determination database 1-2 which were included in the monitoring control operation unit 1-2 of FIG. Although the function of No. 12 is completely transferred to the maintenance device operation unit 5-2, the reference numerals are newly added to 5-2-7, 5-2-15 and 5-2.
-16 is attached.

【0048】故障復旧方法判定手段5−2−7のフロー
図の例は図3の故障復旧方法判定手段1−2−2の場合
と同様であるので説明は省略する。また図10におい
て、図2と同一部分については、同一符号を付して説明
を省略する。1−2−9は、故障状態を通知する通知手
段であり、故障発生検出手段1−2−1で検出した故障
状態を、通信装置6に対して送信する。
The example of the flowchart of the failure recovery method determining means 5-2-7 is the same as that of the failure recovery method determining means 1-2-2 in FIG. Also, in FIG. 10, the same parts as those in FIG. 1-2-9 is a notification unit that notifies a failure state, and transmits the failure state detected by the failure occurrence detection unit 1-2-1 to the communication device 6.

【0049】5−2−6は、故障状態受信手段であり、
故障状態通知手段1−2−9から送信されたデータを通
信装置6を通して受信する。受信した故障状態は、故障
状態保存部5−2−15に保存する。5−2−7は故障
復旧方法判定手段であり、故障状態受信手段5−2−6
が故障を受信した場合に起動され、5−2−15に保存
されている故障状態と予め登録された故障復旧方法判定
用データベース5−2−16とを用いて、故障の復旧方
法の判定を行い、判定結果を故障復旧方法表示手段5−
2−2に出力し、更にこの手段5−2−2を用いてシス
テムMMI5−3で表示を行う。
5-2-6 is a failure state receiving means,
The data transmitted from the failure state notification means 1-2-9 is received through the communication device 6. The received failure state is stored in the failure state storage unit 5-2-15. 5-2-7 is a failure recovery method determining means, and a failure state receiving means 5-2-6.
Is activated when a failure is received, and determines the failure recovery method using the failure state stored in 5-2-15 and the failure recovery method determination database 5-2-16 registered in advance. And the judgment result is displayed on the failure recovery method display means 5-
2-2, and display is performed by the system MMI 5-3 using the means 5-2-2.

【0050】本実施の形態によれば監視制御装置1に故
障が発生した場合、故障内容を保守装置に対して自動的
に送信し、故障状態に応じて故障復旧方法を自動的に判
定する為、故障発生時に装置のオペレータが異常を認識
し、装置のメンテナンスを行うサービスセンターやその
他のキーパーソンに電話連絡することを不要とし、その
通知により、サービスセンターの担当者、あるいはキー
パーソンが装置のオペレータに対して事情を確認した
り、ネットワークを接続して装置の内部状態を確認し、
発生した異常を認識し、故障部位を判定し、故障部品の
交換を指示することを不要にすることができる。このこ
とにより迅速で正確な故障復旧処置が可能となる。
According to the present embodiment, when a failure occurs in the monitoring and control device 1, the content of the failure is automatically transmitted to the maintenance device, and the failure recovery method is automatically determined according to the failure state. In the event of a failure, the operator of the equipment recognizes the abnormality and does not need to call the service center or other key person for maintenance of the equipment, and the notification by the service center staff or key person Check the situation with the operator, connect the network and check the internal state of the device,
It is possible to eliminate the need for recognizing the abnormality that has occurred, determining the location of the failure, and instructing replacement of the failed component. This enables quick and accurate failure recovery measures.

【0051】なお、以上述べた本発明装置全体の機能又
は監視制御装置、保守装置それぞれに係わる機能をプロ
グラムにして磁気デスク等の記録媒体に記録し、これを
CPUで読み出して動作させることが出来る。
The functions of the entire apparatus of the present invention or the functions of the monitoring control device and the maintenance device described above can be recorded as a program on a recording medium such as a magnetic desk and read and operated by the CPU. .

【0052】[0052]

【発明の効果】以上説明したように、本発明によれば、
電力系統を監視制御する監視制御装置に故障が発生した
場合に、故障内容を自動的に判定したり、判定結果に基
づき、部品の倉庫や、保守員を自動的に決定したり、結
果を保守装置や部品倉庫の電話や保守員の持つ移動式電
話に自動的にかけたりすることが可能となり、また、故
障内容が不明な場合も、その旨をキーマンに電話をかけ
ることで連絡が可能となり、また、故障復旧に要する金
額も迅速に算出できる為、迅速で正確な故障復旧を行う
ことが可能となる。
As described above, according to the present invention,
When a failure occurs in the monitoring and control device that monitors and controls the power system, the details of the failure are automatically determined, and based on the results of the determination, the parts warehouse and maintenance personnel are automatically determined, and the results are maintained. It will be possible to automatically make calls to equipment and parts warehouse phones and mobile phones owned by maintenance personnel, and even if the details of the failure are unknown, it will be possible to contact the keyman to notify them, In addition, since the amount of money required for failure recovery can be calculated quickly, it is possible to perform quick and accurate failure recovery.

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

【図1】本発明による電力系統監視制御システムの第1
の実施の形態を示す構成図。
FIG. 1 shows a first embodiment of a power system monitoring and control system according to the present invention.
FIG. 1 is a configuration diagram showing an embodiment.

【図2】故障復旧方法判定用データベースの一構成例を
示す図。
FIG. 2 is a diagram showing a configuration example of a failure recovery method determination database.

【図3】故障復旧判定手段の実施形態1のフロー図の一
例を示す図。
FIG. 3 is a diagram illustrating an example of a flowchart of a first embodiment of a failure recovery determination unit.

【図4】本発明による電力系統監視制御システムの第2
の実施の形態を示す構成図。
FIG. 4 shows a second embodiment of the power system monitoring and control system according to the present invention.
FIG. 1 is a configuration diagram showing an embodiment.

【図5】本発明による電力系統監視制御システムの第3
の実施の形態を示す構成図。
FIG. 5 shows a third embodiment of the power system monitoring and control system according to the present invention.
FIG. 1 is a configuration diagram showing an embodiment.

【図6】本発明による電力系統監視制御システムの第4
の実施の形態を示す構成図。
FIG. 6 shows a fourth embodiment of the power system monitoring and control system according to the present invention.
FIG. 1 is a configuration diagram showing an embodiment.

【図7】本発明による電力系統監視制御システムの第5
の実施の形態を示す構成図。
FIG. 7 shows a fifth embodiment of the power system monitoring and control system according to the present invention.
FIG. 1 is a configuration diagram showing an embodiment.

【図8】故障復旧判定手段の実施形態5,6のフロー図
の例を示す図。
FIG. 8 is a diagram showing an example of a flowchart of a fifth or sixth embodiment of the failure recovery determination means.

【図9】本発明による電力系統監視制御システムの第6
の実施の形態を示す構成図。
FIG. 9 shows a sixth embodiment of the power system monitoring and control system according to the present invention.
FIG. 1 is a configuration diagram showing an embodiment.

【図10】本発明による電力系統監視制御システムの第
7の実施の形態を示す構成図。
FIG. 10 is a configuration diagram showing a seventh embodiment of the power system monitoring and control system according to the present invention.

【符号の説明】[Explanation of symbols]

1 監視制御装置 1−1 ソフトウェア保存部 1−2 監視制御演算部 1−2−1 故障発生検出手段 1−2−2 故障復旧方法判定手段 1−2−3 通知手段 1−2−4 保守装置情報受信手段 1−2−5 部品及び担当者の決定手段 1−2−6 倉庫及び保守員へ電話をかける手段 1−2−6′ 故障内容が不明の場合はキーマンに電
話をかける手段 1−2−7 監視制御装置の動作状態・運転員の操
作内容保存手段 1−2−8 故障復旧金額表示手段 1−2−9 故障状態通知手段 1−2−11 故障状態保存部 1−2−12 故障復旧方法判定用デタベース 1−2−13 倉庫Aの部品の在庫保存部 1−2−14 保守員Aの技量及びスケジュール保存
部 1−2−15 監視制御の動作状態・運転員の操作内
容保存部 1−3 システムMMI装置 1−4 周辺装置 1−5 電話回線とのI/F装置 1−6 電話回線 1−7−1〜1−7−k 倉庫の電話器 1−8−1〜1−8−j 保守員の持つ移動電話器 1−9−1〜1−9−I キーマンの持つ移動電話器 2−1〜2−n,4−1〜4−m WAN通信装置 3 WAN 5 保守装置 5−1 ソフトウェア保存部 5−2 保守装置演算部 5−2−1 受信手段 5−2−2 故障復旧方法表示手段 5−2−3 保守装置情報設定手段 5−2−4 保守装置情報送信手段 5−2−5 故障復旧金額算出手段 5−2−6 故障状態受信手段 5−2−7 故障復旧方法判定手段 5−2−11 部品の在庫保存部 5−2−12 保守員の技量及びスケジュール保存部 5−2−13 部品・人件費・単価保存部 5−2−14 故障復旧金額保存部 5−2−15 故障状態保存部 5−2−16 故障復旧方法判定用データベース 5−3 システムMMI装置 5−4 周辺装置 6 通信装置
DESCRIPTION OF REFERENCE NUMERALS 1 supervisory control device 1-1 software storage unit 1-2 supervisory control operation unit 1-2-1 failure occurrence detection means 1-2-2 failure recovery method determination means 1-2-3 notification means 1-2-4 maintenance device Information receiving means 1-2-5 Means for determining parts and persons in charge 1-2-6 Means for making a call to warehouse and maintenance staff 1-2-6 'Means for making a call to keyman when the details of the failure are unknown 1- 2-7 Means for storing the operation status of the monitoring and control device / operation details of the operator 1-2-8 Failure recovery amount display means 1-2-9 Failure state notification means 1-2-11 Failure state storage section 1-2-12 Database for failure recovery method determination 1-2-13 Storage unit for parts of warehouse A 1-2-14 Skill and schedule storage unit for maintenance personnel A 1-2-15 Operation state of monitoring control and operation contents of operators Part 1-3 System MMI device -4 Peripheral equipment 1-5 I / F device with telephone line 1-6 Telephone line 1-7-1 to 1-7-k Telephone in warehouse 1-8-1 to 1-8-j Maintained by maintenance personnel Mobile phone 1-9-1 to 1-9-I Mobile phone owned by Keyman 2-1 to 2-n, 4-1 to 4-m WAN communication device 3 WAN 5 Maintenance device 5-1 Software storage unit 5 -2 Maintenance unit operation unit 5-2-1 Reception unit 5-2-2 Failure recovery method display unit 5-2-3 Maintenance unit information setting unit 5-2-4 Maintenance unit information transmission unit 5-2-5 Failure recovery Amount calculating means 5-2-6 Failure state receiving means 5-2-7 Failure recovery method determining means 5-2-11 Parts inventory storage section 5-2-12 Maintenance skill and schedule storage section for maintenance personnel 5-2-13 Parts / labor cost / unit price storage unit 5-2-14 Failure recovery amount storage unit 5-2-15 Failure status State storage unit 5-2-16 Failure recovery method determination database 5-3 System MMI device 5-4 Peripheral device 6 Communication device

Claims (8)

【特許請求の範囲】[Claims] 【請求項1】 電力系統を監視制御する監視制御装置
と、この監視制御装置に通信装置を介して接続されると
共にこの監視制御装置を保守するための保守装置とから
成る電力系統監視制御システムにおいて、前記監視制御
装置は、予め故障要因と故障復旧方法との対応関係を格
納した故障復旧方法判定用データベースと、このデータ
ベースの内容と故障データとを照合して故障復旧方法を
判定する故障復旧方法判定手段及びこの故障復旧方法判
定結果を通信装置に出力する通知手段とを備え、前記保
守装置は、前記通信装置を介して送信されてくる故障復
旧方法判定結果を受信する受信手段と、この受信した復
旧方法判定結果を出力する復旧方法出力手段とを備えた
ことを特徴とする電力系統監視制御システム。
1. A power system monitoring and control system comprising a monitoring and control device for monitoring and controlling a power system, and a maintenance device connected to the monitoring and control device via a communication device and for maintaining the monitoring and control device. A monitoring and control apparatus that stores in advance a correspondence between a failure factor and a failure recovery method, a failure recovery method determination database, and a failure recovery method that determines the failure recovery method by comparing the contents of the database with the failure data. Determining means and notifying means for outputting the failure recovery method determination result to the communication device, wherein the maintenance device receives the failure recovery method determination result transmitted via the communication device; And a recovery method output means for outputting the determined recovery method determination result.
【請求項2】 請求項1に記載の電力系統監視制御シス
テムにおいて、保守装置が複数存在する場合に、各保守
装置毎に事前に端末から保守用部品の在庫情報や保守員
の技量、スケジュールを設定し、この設定内容を監視制
御装置に送信しておき、監視制御装置では、故障復旧方
法決定後、前記設定内容に基づいて部品の有無や保守員
の技量やスケジュールに基づき最適な保守装置を選択し
て故障復旧方法を自動的に通知することを特徴とする電
力系統監視制御システム。
2. In the power system monitoring and control system according to claim 1, when a plurality of maintenance devices are present, the maintenance information of the maintenance parts, the skills of the maintenance staff, and the schedule are preliminarily provided from the terminal for each maintenance device. After setting the fault recovery method, the monitoring control device determines the optimal maintenance device based on the presence or absence of parts and the skills and schedule of maintenance personnel based on the setting content. A power system monitoring and control system which automatically notifies a fault recovery method by selecting a fault recovery method.
【請求項3】 請求項2に記載の電力系統監視制御シス
テムにおいて、監視制御装置に故障復旧方法の決定後
に、故障復旧に必要な部品の倉庫や、保守員の持つ移動
式電話に対して自動的に電話をかける手段を設けたこと
を特徴とする電力系統監視制御システム。
3. The power system monitoring and control system according to claim 2, wherein after the monitoring and control device determines a failure recovery method, a storage of parts necessary for the failure recovery and a mobile telephone owned by a maintenance worker are automatically performed. A power system monitoring and control system, comprising means for making a telephone call.
【請求項4】 請求項1ないし請求項3に記載の電力系
統監視制御システムにおいて、監視制御装置内に監視制
御装置自体の動作状態や運転員の操作内容を常時保存す
る保存手段を設け、前記故障復旧方法判定手段はこの保
存手段の内容を参照して故障復旧方法を判定することを
特徴とする電力系統監視制御システム。
4. The power system monitoring and control system according to claim 1, further comprising: a storage unit that constantly stores an operation state of the monitoring and control device itself and an operation content of an operator in the monitoring and control device, A power system monitoring and control system, wherein the failure recovery method determining means refers to the contents of the storage means to determine a failure recovery method.
【請求項5】 請求項4に記載の電力系統監視制御シス
テムにおいて、監視制御装置内に故障内容の判定を行う
ことのできる予め登録してある有識者に連絡する連絡手
段を設け、前記故障復旧方法判定手段によって故障内容
を判定できない場合に、この連絡手段により自動的に前
記有識者に電話をかけることを特徴とする電力系統監視
制御システム。
5. The power system monitoring and control system according to claim 4, further comprising: a communication unit that contacts a pre-registered expert who can judge the content of the fault in the monitoring and control device, wherein the fault recovery method is provided. A power system monitoring and control system characterized in that, when the failure content cannot be determined by the determination means, the communication means automatically calls the expert.
【請求項6】 請求項5に記載の電力系統監視制御シス
テムにおいて、各保守装置内に部品、人件費単価保存手
段及び故障復旧金額算出手段を設け、監視制御装置が、
部品の有無や保守員の技量やスケジュールに基づき最適
な保守装置を選択した際、故障復旧を行った場合に必要
となる部品の価格や保守員の旅費、日当等の人件費に基
づき、故障復旧に要する金額を算出し、この算出結果を
通信装置を介して監視制御装置のオペレータに自動的に
通知することを特徴とする電力系統監視制御システム。
6. The power system monitoring and control system according to claim 5, wherein each of the maintenance devices includes a component, a unit cost saving unit for labor cost, and a failure recovery amount calculation unit.
When selecting the optimal maintenance device based on the presence or absence of parts and the skills and schedule of maintenance personnel, breakdown based on the price of parts, travel expenses of maintenance personnel, labor cost such as daily allowance, etc. necessary for recovery from failure. A power system monitoring and control system which calculates an amount of money required for restoration and automatically notifies the operator of the monitoring and control device of the calculation result via a communication device.
【請求項7】 電力系統を監視制御する監視制御装置
と、この監視制御装置に通信装置を介して接続されると
共にこの監視制御装置を保守するための保守装置とから
成る電力系統監視制御システムにおいて、保守装置に故
障復旧方法判定用データベースを設け、監視制御装置に
故障が発生した際に、前記保守装置に対して自動的に監
視制御装置の故障内容についてし、この通知のあった保
守装置は、前記故障復旧方法判定用データベースによっ
て故障復旧方法を判定することを特徴とする電力系統監
視制御システム。
7. A power system monitoring and control system comprising a monitoring and control device for monitoring and controlling a power system, and a maintenance device connected to the monitoring and control device via a communication device and for maintaining the monitoring and control device. The maintenance device is provided with a failure recovery method determination database, and when a failure occurs in the monitoring control device, the maintenance device automatically notifies the maintenance device of the failure content of the monitoring control device. And a failure recovery method is determined by the failure recovery method determination database.
【請求項8】 電力系統を監視制御する監視制御装置
と、この監視制御装置に通信装置を介して接続されると
共にこの監視制御装置を保守するための保守装置とから
成る電力系統監視制御システムにおいて、前記監視制御
装置に故障が発生すると、この故障データと、予め故障
要因と故障復旧方法との対応関係を格納した故障復旧方
法判定用データベースの内容とを照合して故障復旧方法
を判定する機能、その故障復旧方法判定結果を通信装置
に出力する機能を実現するためのプログラム及び前記通
信装置を介して送信されてくる故障復旧方法判定結果を
受信して、復旧方法出力手段から表示または警報出力す
る機能を実現するためのプログラムをそれぞれ記録した
記録媒体。
8. A power system monitoring and control system comprising a monitoring and control device for monitoring and controlling a power system, and a maintenance device connected to the monitoring and control device via a communication device and for maintaining the monitoring and control device. When a failure occurs in the monitoring control device, a function of collating the failure data with the contents of a failure recovery method determination database that stores a correspondence relationship between a failure factor and a failure recovery method in advance to determine a failure recovery method. Receiving a failure recovery method determination result transmitted through the communication device and a program for realizing a function of outputting the failure recovery method determination result to the communication device, and displaying or outputting an alarm or a warning from the recovery method output means. Storage media on which programs for realizing the functions to perform are recorded.
JP10199866A 1998-06-30 1998-06-30 Power system monitor and control system and recording medium with program recorded therein Pending JP2000023362A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10199866A JP2000023362A (en) 1998-06-30 1998-06-30 Power system monitor and control system and recording medium with program recorded therein

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10199866A JP2000023362A (en) 1998-06-30 1998-06-30 Power system monitor and control system and recording medium with program recorded therein

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002007595A (en) * 2000-06-22 2002-01-11 Hitachi Electronics Service Co Ltd Facility service support system, computer for service center, and recording medium
JP2002272139A (en) * 2001-03-14 2002-09-20 Hitachi Ltd Inverter-managing system and inverter
JP2003044126A (en) * 2001-08-02 2003-02-14 Mitsui Eng & Shipbuild Co Ltd Remote maintenance system and stock management system
JP2003288425A (en) * 2002-03-28 2003-10-10 Fujitsu Ltd Method for coding with trouble
KR100510345B1 (en) * 2000-08-19 2005-08-26 최위영 System for controlling power supply through internet
JP2006081358A (en) * 2004-09-13 2006-03-23 Meidensha Corp Power instruction system of electric railroad

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002007595A (en) * 2000-06-22 2002-01-11 Hitachi Electronics Service Co Ltd Facility service support system, computer for service center, and recording medium
KR100510345B1 (en) * 2000-08-19 2005-08-26 최위영 System for controlling power supply through internet
JP2002272139A (en) * 2001-03-14 2002-09-20 Hitachi Ltd Inverter-managing system and inverter
JP4490595B2 (en) * 2001-03-14 2010-06-30 株式会社日立産機システム Inverter management system
JP2003044126A (en) * 2001-08-02 2003-02-14 Mitsui Eng & Shipbuild Co Ltd Remote maintenance system and stock management system
WO2003014851A1 (en) * 2001-08-02 2003-02-20 Mitsui Engineering & Shipbuilding Co., Ltd. Remote maintenance system and stock management system
JP2003288425A (en) * 2002-03-28 2003-10-10 Fujitsu Ltd Method for coding with trouble
JP2006081358A (en) * 2004-09-13 2006-03-23 Meidensha Corp Power instruction system of electric railroad
JP4626236B2 (en) * 2004-09-13 2011-02-02 株式会社明電舎 Electric railway power command system

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