JP4937235B2 - Remote monitoring system and fault isolation method - Google Patents

Remote monitoring system and fault isolation method Download PDF

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JP4937235B2
JP4937235B2 JP2008298531A JP2008298531A JP4937235B2 JP 4937235 B2 JP4937235 B2 JP 4937235B2 JP 2008298531 A JP2008298531 A JP 2008298531A JP 2008298531 A JP2008298531 A JP 2008298531A JP 4937235 B2 JP4937235 B2 JP 4937235B2
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周子 杉崎
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Toshiba Corp
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本発明は、例えばビル施設の被監視対象である受変電機器の監視を行う遠隔監視システム及びその故障分離方法に関する。   The present invention relates to a remote monitoring system that monitors, for example, a power receiving / transforming device that is a monitoring target of a building facility, and a failure isolation method thereof.

ビル施設の管理を行う遠隔監視システムは、分散設置される多数の変圧器や、遮断機等の受変電設備を例えばエリヤ毎等でグループ化し、エリヤ毎のそれらの動作状態を測定、監視する監視装置と、監視装置が測定した監視・モニタ信号を収集して管理設備(中央監視設備)へ伝送する伝送装置とネットワークから構成される。管理設備は、各受変電設備の動作状態のみならず、監視装置及び伝送装置の自己点検状態も監視する必要がある。例えば、特許文献1では、排水機場(ビル施設)を管理する(機器監視制御)システムにおいて、機器応答監視機能及び応答機能を含めた監視機能を有している監視装置と応答機能を有した機器監視制御装置が通信ネットワークに接続される機器監視制御システムがある。   A remote monitoring system that manages building facilities is a monitoring system that groups and distributes a large number of distributed transformers and receiving / transforming equipment such as circuit breakers, for example, for each area, and measures and monitors their operating status for each area. It consists of a device, a transmission device that collects monitoring / monitoring signals measured by the monitoring device and transmits them to a management facility (central monitoring facility) and a network. The management facility needs to monitor not only the operating state of each power receiving / transforming facility but also the self-inspection state of the monitoring device and the transmission device. For example, in Patent Document 1, in a (device monitoring control) system for managing a drainage station (building facility), a monitoring device having a monitoring function including a device response monitoring function and a response function and a device having a response function There is a device monitoring control system in which a monitoring control device is connected to a communication network.

しかし、伝送装置と監視装置がそれぞれ別個の機器で構成される場合には、伝送装置、即ち、監視装置の監視信号を収集してネットワークに送信する集線装置や、監視装置、また受変電設備(機器)の異常検出や異常を検出した場合に管理設備で故障分離が可能な警報伝達をすることが困難な問題があった。   However, when the transmission device and the monitoring device are configured as separate devices, the transmission device, that is, the concentrator that collects the monitoring signal of the monitoring device and transmits it to the network, the monitoring device, and the receiving / transforming equipment ( There is a problem that it is difficult to transmit alarms that can be separated into faults in the management equipment when an abnormality is detected.

また、故障分離に必要な識別情報IDを付与して管理する伝送装置、又はその様な管理機能を備えた伝送装置と監視機能を備えた機器監視制御装置は装置コストを要する問題があった。
特開2007−251697
Further, a transmission apparatus that assigns and manages identification information ID necessary for fault isolation, or a transmission apparatus that has such a management function and a device monitoring and control apparatus that has a monitoring function have a problem of requiring apparatus cost.
JP2007-251697

本発明は、このような事情に基づいてなされたもので、経済的な装置構成で監視装置、表示装置、集線装置等の故障分離が迅速にできる遠隔監視システム及びその故障分離方法を提供することを目的とする。   The present invention has been made based on such circumstances, and provides a remote monitoring system and a failure isolation method thereof that can quickly isolate a failure of a monitoring device, a display device, a line concentrator, etc. with an economical device configuration. With the goal.

前記目的を達成するため、本発明の遠隔監視システムは、少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置毎に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記各集線装置応答装置との間で通信可能なネットワークを備えた遠隔監視システムにおいて、前記各集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信する送受信手段を備え、前記従監視装置は少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を前記主監視装置に返信する送受信手段を備え、前記主監視装置は固有の識別情報を有し、前記従監視装置及び前記従監視装置に対応する前記集線装置用応答装置とにそれぞれ応答要求を行い、前記従監視装置からの応答がなく、かつ前記集線装置用応答装置から応答がある場合は前記従監視装置が異常であると判定し、前記主監視装置は、前記従監視装置及び前記従監視装置に対応する前記集線装置用応答装置とにそれぞれ応答要求を行い、前記従監視装置からの応答がなく、かつ前記集線装置用応答装置から応答がない場合は、前記集線装置が異常であると判定し、前記主監視装置は、前記従監視装置及び前記従監視装置に対応する前記集線装置用応答装置とにそれぞれ応答要求を行い、前記従監視装置から応答があり、かつ前記集線装置用応答装置から応答がない場合は前記集線装置用応答装置が異常であると判定する故障分離手段を備えることを特徴とする。   To achieve the above object, a remote monitoring system of the present invention includes at least one first concentrator, a second concentrator, a concentrator response device connected to each concentrator, and the first concentrator. A sub-monitoring device connected to each one of the line concentrators, a main monitoring device to which a monitored device is connected and connected to the second line concentrator, the first concentrator and the second In a remote monitoring system including a transmission line to which a line concentrator is connected, and a network capable of communicating between the slave monitoring apparatus, the main monitoring apparatus, and each line concentrator response apparatus, the response apparatuses for each line concentrator are Each having their own identification information, and when receiving a response request signal from the main monitoring device via the network, if the device itself is healthy, a healthy signal is used as a response signal via the network. A transmission / reception means for sending a reply to the device, wherein the slave monitoring device is at least one, has a device to be monitored connected to itself, or monitors its own operation and has unique identification information; When the response request is received via the device, the device itself is healthy, and includes a transmission / reception means for returning a response signal to the main monitoring device together with the identification information of the device, and the main monitoring device has unique identification information, When a response request is made to the slave monitoring device and the response device for the line concentrator corresponding to the slave monitoring device, there is no response from the slave monitoring device, and there is a response from the response device for the line concentration device It is determined that the slave monitoring device is abnormal, and the master monitoring device makes a response request to the slave monitoring device and the concentrator response device corresponding to the slave monitoring device, and If there is no response from the monitoring device and no response from the concentrator response device, it is determined that the concentrator is abnormal, and the main monitoring device corresponds to the slave monitoring device and the slave monitoring device. A response request is made to each of the concentrator response devices, and if there is a response from the slave monitoring device and no response from the concentrator response device, it is determined that the concentrator response device is abnormal It comprises a fault isolation means.

また、本発明の遠隔監視システムは、少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置毎に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記各集線装置応答装置との間で通信可能なネットワークを備えた遠隔監視システムにおいて、前記集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信する送受信手段を備え、前記従監視装置は少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して前記主監視装置から応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を前記主監視装置に返信する送受信手段を備え、前記主監視装置は固有の識別情報を有し、前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記集線装置用応答装置から応答があった場合は当該従監視装置が異常であると判定し、前記主監視装置は前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記対応する前記集線装置用応答装置から応答がない場合は当該集線装置が異常であると判定する故障分離手段を備えることを特徴とする。   The remote monitoring system of the present invention includes at least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, and each of the first concentrators. A slave monitoring device connected to the main monitoring device, a main monitoring device connected to the second line concentrator while being connected to the monitored device, and the first concentrator and the second concentrator. And a remote monitoring system including a network capable of communication among the slave monitoring device, the main monitoring device, and each of the concentrator response devices, the concentrator response device includes unique identification information. And when the response request signal is received from the main monitoring device via the network, if the device itself is healthy, the healthy signal is returned as a response signal to the main monitoring device via the network. The slave monitoring device is at least one, has a device to be monitored connected to itself, or monitors its own operation and has unique identification information, and is connected to the master monitoring device via the network. When the response request is received from the device, when the device itself is healthy, the device includes a transmission / reception unit that returns a response signal to the main monitoring device together with the identification information of the device itself, the main monitoring device has unique identification information, When a response request is made to the slave monitoring device and there is no response from the corresponding slave monitoring device, a response request is made to the response device for the line concentrator, and when there is a response from the response device for the line concentrator The slave monitoring device determines that the slave monitoring device is abnormal, the master monitoring device makes a response request to the slave monitoring device, and there is no response from the corresponding slave monitoring device, and the concentrator response Performs a response request to location, the if there is no response from the corresponding said for concentrator responsive device is characterized in that the concentrator is provided with a fault isolation means for determining as abnormal.

更に本発明の、遠隔監視システムの故障分離方法は、少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記集線装置応答装置との間が通信可能なネットワークを備えた遠隔監視システムの故障分離方法において、
前記集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信し、前記従監視装置は少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を前記主監視装置に返信し、前記主監視装置は固有の識別情報を有し、前記従監視装置と前記集線装置用応答装置とに応答要求を行い、前記集線装置用応答装置から応答があり、前記従監視装置から応答がない場合は前記従監視装置が異常であると判定し、前記主監視装置は、前記従監視装置と前記集線装置用応答装置とに応答要求を行い、前記集線装置用応答装置から応答があり、前記従監視装置と前記集線装置用応答装置の両者から応答がない場合は、前記集線装置が異常であると判定し、前記主監視装置は、前記従監視装置と前記集線装置用応答装置とに応答要求を行い、前記従監視装置から応答があり、前記第1の集線装置用応答装置から応答がない場合は前記集線装置用応答装置が異常であると判定することを特徴とする。
Furthermore, the fault isolation method of the remote monitoring system of the present invention includes at least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, and the first concentrator. A secondary monitoring device connected to the first line concentrator, a main monitoring device connected to the second line concentrator as well as a device to be monitored, and the first line concentrator and the second line concentrator. In a fault isolation method of a remote monitoring system comprising a transmission line to which the communication is performed, and a network in which the slave monitoring device, the main monitoring device, and the concentrator response device can communicate with each other,
The concentrator response devices each have unique identification information, and when the response request signal is received from the main monitoring device via the network, when the device itself is healthy, the healthy signal is used as the response signal. The slave monitoring device is at least one, and the device to be monitored connected to itself, and monitoring its own operation and having unique identification information, When a response request is received via the network, if the device itself is healthy, a response signal is returned to the main monitoring device together with its own identification information, and the main monitoring device has unique identification information, and A response request is made to the monitoring device and the concentrator response device, and when there is a response from the concentrator response device and there is no response from the slave monitoring device, the slave monitoring device is different. The main monitoring device makes a response request to the slave monitoring device and the concentrator response device, and there is a response from the concentrator response device, and the slave monitoring device and the concentrator device If there is no response from both of the response devices, it is determined that the line concentrator is abnormal, and the main monitoring device makes a response request to the slave monitoring device and the line concentrator response device, and the slave monitoring device When there is no response from the first concentrator response device, it is determined that the concentrator response device is abnormal.

更にまた、本発明の、遠隔監視システムの故障分離方法は、少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記集線装置応答装置との間が通信可能なネットワークを備えた遠隔監視システムの故障分離方法において、前記集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信し、前記従監視装置は、少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して前記主監視装置から応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を返信し、前記主監視装置は固有の識別情報を有し、前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記集線装置用応答装置から応答があった場合は前記従監視装置が異常であると判定し、前記主監視装置は前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記集線装置用応答装置から応答がない場合は前記集線装置が異常であると判定することを特徴とする。   Furthermore, the fault isolation method for a remote monitoring system according to the present invention includes at least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, A slave monitoring device connected to the first line concentrator, a main monitoring device connected to the second line concentrator while being connected to the monitored device, the first line concentrator and the second In the fault isolation method of a remote monitoring system comprising a transmission line to which a line concentrator is connected, and a network in which the slave monitoring apparatus, the main monitoring apparatus, and the line concentrator response apparatus can communicate, the line concentrator response Each device has its own identification information, and when receiving a response request signal from the main monitoring device via the network, if the device itself is healthy, a healthy signal is used as a response signal via the network. Reply to the master monitoring device, the slave monitoring device is at least one, has a device to be monitored connected to itself, or monitors its own operation and has unique identification information, and If the response request is received from the main monitoring device via the self monitoring device, if the device itself is healthy, a response signal is returned together with the identification information of the device itself, the main monitoring device has unique identification information, and the slave monitoring device If there is no response from the corresponding slave monitoring device, the response request is sent to the concentrator response device, and if there is a response from the concentrator response device, the slave monitoring device The master monitoring device makes a response request to the slave monitoring device, and makes a response request to the response device for the concentrator when there is no response from the corresponding slave monitoring device. If there is no response from the use concentrator response apparatus is characterized by determining that the concentrator is abnormal.

本発明によれば、経済的な装置構成で監視装置、表示装置、集線装置等の故障分離が迅速にできる遠隔監視システム及びその故障分離方法を提供することができ、これにより異常発生時の部位特定を迅速に行うことができる。   According to the present invention, it is possible to provide a remote monitoring system that can quickly isolate a failure of a monitoring device, a display device, a line concentrator, and the like with an economical device configuration, and a failure isolation method thereof. Identification can be performed quickly.

以下本発明の実施形態について、図面を参照して説明する。図1は、本発明の実施形態に関わる遠隔監視システムの構成図である。   Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 is a configuration diagram of a remote monitoring system according to an embodiment of the present invention.

図1において、遠隔監視システムは、伝送路1に接続される集線装置(第2の集線装置を構成している)2a、集線装置(第1の集線装置を構成している)2b…2n、各集線装置2a〜2nに接続される主監視装置4、従監視装置5、表示装置7、および集線装置用応答装置21a、21b…21nを備える。集線装置用応答装置21aは、第2の集線装置用応答装置を構成し、集線装置用応答装置21b…21nは第1の集線装置用応答装置を構成している。なお、ここで従監視装置5は、1台のみ示されているが、表示装置7を含めて3台以上(図示せず)設置されていてもよい。   In FIG. 1, the remote monitoring system includes a line concentrator (which constitutes a second line concentrator) 2a, a line concentrator (which constitutes a first line concentrator) 2b... 2n connected to the transmission line 1. The main monitoring device 4, the secondary monitoring device 5, the display device 7, and the concentrator response devices 21a, 21b,... 21n connected to the respective concentrators 2a to 2n. The concentrator response device 21a constitutes a second concentrator response device, and the concentrator response devices 21b... 21n constitute a first concentrator response device. Although only one slave monitoring device 5 is shown here, three or more (not shown) including the display device 7 may be installed.

主監視装置4、従監視装置5、表示装置7、及び集線装置用応答装置21a〜21nは、後述のネットワークNを介して信号を伝送するため、それぞれが固有の識別情報IDを持ち、その識別情報IDにより各装置間で通信する。   Since the main monitoring device 4, the slave monitoring device 5, the display device 7, and the concentrator response devices 21a to 21n transmit signals via the network N described later, each has a unique identification information ID, and its identification Communication is performed between the devices based on the information ID.

主監視装置4と従監視装置5には、それぞれ受変電設備を構成する変圧器、遮断器、その他空調、照明関連の機器が接続され、主監視装置4と従監視装置5からはそれぞれの自己監視信号と接続された被監視対象機器の監視信号とが集線装置2a、2bへ出力されている。   The main monitoring device 4 and the sub-monitoring device 5 are connected to transformers, circuit breakers, and other air-conditioning and lighting-related devices constituting the power receiving / transforming equipment, respectively. The monitoring signal and the monitoring signal of the monitored device connected thereto are output to the line concentrators 2a and 2b.

集線装置2a〜2nは、ハブ、又はノードと呼ばれる伝送装置である。そして、各集線装置2a〜2nの通信ポートには、主監視装置4又は従監視装置5、又は表示装置7と、集線装置2a〜2nに対応する集線装置用応答装置21a〜21nが接続される。そして、これらの各集線装置2a〜2nの通信ポートに入出力される信号を主監視装置4から指定される応答要求により指定された機器・装置の間で、伝送路1を介して中継伝送する。   The concentrators 2a to 2n are transmission devices called hubs or nodes. The main monitoring device 4 or the secondary monitoring device 5 or the display device 7 and the concentrator response devices 21a to 21n corresponding to the concentrators 2a to 2n are connected to the communication ports of the concentrators 2a to 2n. . Then, the signals input / output to / from the communication ports of the respective concentrators 2a to 2n are relayed and transmitted via the transmission line 1 between the devices / devices designated by the response request designated by the main monitoring device 4. .

即ち、伝送路1と伝送路1によって接続される集線装置2a〜2nとは、監視信号を送受信する監視信号ネットワークNを構成している。   That is, the transmission line 1 and the line concentrators 2a to 2n connected by the transmission line 1 constitute a monitoring signal network N that transmits and receives monitoring signals.

信号を中継伝送する通信手順は、LAN(Lacal Area Network)で用いられるCDMA(符号分割多元接続)方式とは異なり、トークンパッシング、IP(インターネットプロトコル)等により通信手順上は信号の衝突や消滅が無く、また送信元、送信先が識別情報IDにより特定できるものが用いられる。本実施形態の故障分離方法では、この集線装置には、識別情報IDが付与されたものでなく、単なるハブの様な信号を集合・分配する機能のみの機器の場合でも故障分離を可能としている。   Unlike the CDMA (Code Division Multiple Access) method used in LAN (Lacal Area Network), the communication procedure for relaying signals does not cause collision or disappearance of signals due to token passing, IP (Internet Protocol), etc. None, and a transmission source and a transmission destination that can be specified by identification information ID are used. In the fault isolation method according to the present embodiment, the concentrator is not provided with identification information ID, but enables fault isolation even in the case of a device only having a function of collecting and distributing signals such as a hub. .

図2は、集線装置用応答装置21a〜21nの内部構成を示す機能ブロック図である。集線装置用応答装置21a〜21nは、各集線装置2a、2nの自己点検監視を行った監視信号を各集線装置2a、2nとの間で入出力する機器である。通常、主監視装置4から自装置宛の応答要求を受信すると、自装置が接続されている集線装置が正常であると判断し、応答要求に対応して自分自身が健全なとき正常を示すヘルシーの応答信号を識別情報IDと共に出力する。   FIG. 2 is a functional block diagram showing an internal configuration of the concentrator response devices 21a to 21n. The concentrator response devices 21a to 21n are devices that input and output the monitoring signals obtained by performing self-inspection monitoring of the concentrators 2a and 2n to and from the concentrators 2a and 2n. Normally, when a response request addressed to the own device is received from the main monitoring device 4, it is determined that the line concentrator to which the own device is connected is normal, and indicates a healthy state when the device itself is healthy in response to the response request. Is output together with the identification information ID.

この集線装置用応答装置21a〜21nからのヘルシーの応答信号は、集線装置用応答装置自身の自己点検データを含まない単なる受信確認のみのオウム返しの応答であっても構わない。   The healthy response signal from the concentrator response devices 21a to 21n may be a response of a simple parrot return that does not include self-check data of the concentrator response device itself.

主監視装置4は従監視装置5および表示装置7、集線装置用応答装置21a〜21nとの間で応答要求を行って、監視信号を収集する。各監視装置に接続された機器からの監視信号を判読して、機器の動作状態を細部に点検するか、または、各機器や各集線装置用応答装置からの応答の有無を監視することにより、どの機器が故障しているかの故障分離を行う。   The main monitoring device 4 makes a response request between the slave monitoring device 5 and the display device 7 and the concentrator response devices 21a to 21n, and collects monitoring signals. By reading the monitoring signal from the equipment connected to each monitoring device and checking the operating state of the equipment in detail, or by monitoring the presence or absence of a response from each device or each concentrator response device, Perform fault isolation to determine which equipment has failed.

以下、本実施形態の遠隔監視システムの故障分離に関わる動作処理を中心に説明する。   Hereinafter, the operation processing related to the fault isolation of the remote monitoring system of this embodiment will be mainly described.

主監視装置4は、従監視装置5と表示装置7と集線装置用応答装置21a、21b、21nにネットワークNを介して応答要求を行う。主監視装置4は、各機器から識別情報IDと共にヘルシーの応答信号を受信するとそれが正常と判断する。いずれかの機器から応答がない場合、従監視装置5又は表示装置7と集線装置用応答装置21a、21b、21nの応答可否の組み合わせによって集線装置2a、2b、2nが異常、従監視装置5又は表示装置7の異常、集線装置用応答装置21a、21b、21nが異常かを判断して、表示装置7に異常を送信する。以上の処理を一定時間毎に行うことにより監視を行うものである。   The main monitoring device 4 sends a response request to the slave monitoring device 5, the display device 7, and the concentrator response devices 21a, 21b, and 21n via the network N. When the main monitoring device 4 receives the healthy response signal together with the identification information ID from each device, the main monitoring device 4 determines that it is normal. When there is no response from any of the devices, the concentrators 2a, 2b, 2n are abnormal due to the combination of the response of the subordinate monitoring device 5 or display device 7 and the concentrator response devices 21a, 21b, 21n. It is determined whether the display device 7 is abnormal or the concentrator response devices 21a, 21b, 21n are abnormal, and the abnormality is transmitted to the display device 7. Monitoring is performed by performing the above processing at regular intervals.

主監視装置4は、ネットワークNを介して監視信号の入力及び出力機能を有する集線装置2aに接続され、従監視装置5、表示装置7、集線装置用応答装置21b、21n、集線装置2a〜2nの故障分離を行う。   The main monitoring device 4 is connected to the line concentrator 2a having monitoring signal input and output functions via the network N, and the slave monitoring device 5, the display device 7, the line concentrator response devices 21b and 21n, and the line concentrators 2a to 2n. Perform fault isolation.

図3は、主監視装置4の動作を説明する機能ブロック図である。   FIG. 3 is a functional block diagram for explaining the operation of the main monitoring device 4.

主監視装置4は、従監視装置5、表示装置7、集線装置用応答装置21a〜21nに対して応答要求信号を出力する応答要求部41と、従監視装置5及び又は表示装置7と集線装置用応答装置21a〜21nからの応答信号の有無を格納(保存)する応答有無格納部42と、従監視装置5及び又は表示装置7からの応答信号の有無と集線装置用応答装置21a〜21nからの応答信号の有無によってそれぞれの異常を判定する集線装置異常判定部43及び監視・表示装置異常判定部44並びに集線装置用応答装置異常判定部45と、ネットワークNを介して所定の装置、機器との間で応答要求信号や応答信号の送受信および各異常判定部43、44、45での判定結果を表示装置7に送信する送受信部46と、自分に接続される被監視対象の機器、装置との間で監視信号(ヘルシーの応答信号)を入出力して、被監視対象の機器を監視する応答監視部47と、応答要求部41〜応答監視部47の動作を管理して応答信号の処理を制御する応答処理部40とを備え、従監視装置6、表示装置7、集線装置用応答装置21a〜21n、集線装置2a〜2nの故障分離を行う故障分離手段を構成している。応答処理部40〜応答監視部47の機能構成間はそれぞれが内部バス等により接続、又は論理的な信号接続が行われ、信号、情報を入出力する。   The main monitoring device 4 includes a response request unit 41 that outputs a response request signal to the slave monitoring device 5, the display device 7, and the concentrator response devices 21a to 21n, the slave monitoring device 5 and / or the display device 7, and the concentrator. Response presence / absence storage unit 42 for storing (preserving) the presence / absence of response signals from response devices 21a to 21n, and presence / absence of response signals from slave monitoring device 5 and / or display device 7 and response devices 21a to 21n for concentrators The concentrator abnormality determining unit 43, the monitoring / display device abnormality determining unit 44, and the concentrator response device abnormality determining unit 45 for determining each abnormality depending on the presence or absence of the response signal, and a predetermined device or device via the network N Transmission / reception of response request signals and response signals and transmission / reception units 46 that transmit the determination results of the abnormality determination units 43, 44, and 45 to the display device 7; Monitor and monitor the operation of the response monitoring unit 47 and the response requesting unit 41 to the response monitoring unit 47 by monitoring and outputting monitoring signals (healthy response signals) between devices and devices. And a response processing unit 40 that controls processing of the response signal, and constitutes fault isolation means for performing fault isolation of the slave monitoring device 6, the display device 7, the concentrator response devices 21a to 21n, and the concentrators 2a to 2n. Yes. The functional configurations of the response processing unit 40 to the response monitoring unit 47 are connected by an internal bus or the like, or logical signal connection is performed, and signals and information are input / output.

集線装置異常判定部43は、例えば、応答有無格納部42の保存データが従監視装置5及び又は表示装置7からの応答がなく集線装置用応答装置21a〜21nからも応答がない場合は集線装置用応答装置21a〜21nが接続されている集線装置2a〜2nが異常であると判断する。   The line concentrator abnormality determining unit 43, for example, the line concentrator when the data stored in the response presence / absence storage unit 42 has no response from the slave monitoring device 5 and / or the display device 7 and no response from the line concentrator response devices 21a to 21n. It is determined that the line concentrators 2a to 2n to which the response devices 21a to 21n are connected are abnormal.

監視・表示装置異常判定部44は、例えば、応答有無格納部42の保存データが従監視装置5及び又は表示装置7から応答がなく集線装置用応答装置21a〜21nからの応答がある場合は従監視装置5及び又は表示装置7が異常であると判断する。   The monitoring / display device abnormality determination unit 44 is, for example, in the case where the data stored in the response presence / absence storage unit 42 has no response from the slave monitoring device 5 and / or the display device 7 and there is a response from the concentrator response devices 21a to 21n. It is determined that the monitoring device 5 and / or the display device 7 are abnormal.

集線装置用応答装置異常判定部45は、応答有無格納部42の結果が従監視装置5及び又は表示装置7から応答があり応答有無格納部42の結果が集線装置用応答装置21a、21b、21nから応答がない場合は集線装置用応答装置21a〜21nが異常であると判断する。   The concentrator response device abnormality determination unit 45 receives the response from the slave monitoring device 5 and / or the display device 7 as a result of the response presence / absence storage unit 42, and the results of the response presence / absence storage unit 42 indicate the concentrator response devices 21a, 21b, and 21n. If there is no response, it is determined that the concentrator response devices 21a to 21n are abnormal.

送受信部46は、集線装置異常判定部43および監視・表示装置異常判定部44および集線装置用応答装置異常判定部45より得られた異常を通知する監視信号を、集線装置2a−伝送路1―集線装置2n経由のネットワークNを介して表示装置7に送信する。   The transmission / reception unit 46 sends a monitoring signal for notifying the abnormality obtained from the concentrator abnormality determining unit 43, the monitoring / display device abnormality determining unit 44, and the concentrator response device abnormality determining unit 45 to the concentrator 2a-transmission path 1- The data is transmitted to the display device 7 via the network N via the line concentrator 2n.

次に、これらの説明を詳細におこなう。従監視装置5は、信号の入力及び出力機能を有する集線装置21bを介して接続され、被監視対象、例えば、受変電機器の動作監視を行うと共にネットワークNを介した主監視装置4からの応答要求に対応して自身が健全で有ればヘルシーの応答信号を出力する。   Next, these explanations will be made in detail. The slave monitoring device 5 is connected via a concentrator 21b having signal input and output functions, and monitors the operation of a monitored object, for example, a power receiving / transforming device, and responds from the main monitoring device 4 via the network N. In response to the request, if it is healthy, it outputs a healthy response signal.

表示装置7は、ネットワークNとの間で監視信号の入力及び出力する集線装置2nを介して接続され、所定の手順により各監視装置から受信したデータの保存表示を行うと共に応答要求があったときで自分自身が健全なときヘルシーの応答信号を出力する。   The display device 7 is connected to the network N via a concentrator 2n that inputs and outputs a monitoring signal, and performs a storage display of data received from each monitoring device according to a predetermined procedure and when a response is requested. When it is healthy, it outputs a healthy response signal.

集線装置用応答装置21b、21nは、集線装置2b及び集線装置2nにそれぞれ接続され、主監視装置4からネットワークNを介して応答要求があったときで自分自身が健全なときヘルシーの応答信号をそれぞれ返信する。   The concentrator response devices 21b and 21n are connected to the concentrator 2b and the concentrator 2n, respectively, and when a response request is received from the main monitoring device 4 via the network N and a healthy response signal is received. Reply each.

図4は、主監視装置4の故障分離手順を示すフローチャートである。図4において主監視装置4の故障分離手段は、従監視装置5及び又は表示装置7と、集線装置用応答監視装置21a〜21nに対して応答要求を行い(S1)、その結果従監視装置5及び又は表示装置7からの応答信号があるかどうかを判断し(S2)、従監視装置5及び又は表示装置7からの応答信号があったと判断し、集線装置用応答監視装置21a〜21nから応答信号があるかどうかを判断し(S6)、集線装置用応答装置21a〜21nから応答信号がない場合には、集線装置用応答装置21a〜21nの異常と判定する(S7)。   FIG. 4 is a flowchart showing a failure isolation procedure of the main monitoring device 4. In FIG. 4, the failure separation means of the main monitoring device 4 makes a response request to the slave monitoring device 5 and / or the display device 7 and the line monitoring device response monitoring devices 21a to 21n (S1). And / or determining whether or not there is a response signal from the display device 7 (S2), determining that there is a response signal from the slave monitoring device 5 and / or the display device 7, and responding from the response monitoring devices 21a to 21n for the line concentrator. It is determined whether or not there is a signal (S6), and if there is no response signal from the concentrator response devices 21a to 21n, it is determined that the concentrator response devices 21a to 21n are abnormal (S7).

そして、ステップS2において従監視装置5及び又は表示装置7からの応答信号がない場合であって、ステップS6と同様に集線装置用応答監視装置21a〜21nから応答信号があるかどうか判断し(S3)、要求を行い、その結果従監視装置5及び又は表示装置7からの応答信号がなく、集線装置用応答装置21a〜21nから応答信号がある場合には従監視装置5及び又は表示装置7の異常と判定する(S4)。   Then, it is determined in step S2 that there is no response signal from the slave monitoring device 5 and / or the display device 7, and it is determined whether or not there is a response signal from the concentrator response monitoring devices 21a to 21n as in step S6 (S3). ), When there is no response signal from the slave monitoring device 5 and / or the display device 7 and there is a response signal from the response devices 21a to 21n for the line concentrator, the slave monitoring device 5 and / or the display device 7 It is determined as abnormal (S4).

さらに、ステップS3において集線装置用応答装置21a〜21nから応答信号がない場合には集線装置2a〜2nが異常と判定する(S5)。なお、ステップS6において集線装置用応答装置21a〜21nから応答信号があった場合には、ステップS1に戻る。
図5は、正常状態における応答信号の処理手順を説明する概念図である。
Furthermore, when there is no response signal from the concentrator response devices 21a to 21n in step S3, the concentrators 2a to 2n are determined to be abnormal (S5). When there is a response signal from the concentrator response devices 21a to 21n in step S6, the process returns to step S1.
FIG. 5 is a conceptual diagram illustrating a response signal processing procedure in a normal state.

図5では、ビル100においてビルの施設を管理するための主監視装置4は、従監視装置5と表示装置7と集線装置2a〜2nと集線装置用応答装置21a〜21nを使用しているものとする。   In FIG. 5, the main monitoring device 4 for managing the building facilities in the building 100 uses the sub-monitoring device 5, the display device 7, the line concentrators 2a to 2n, and the line concentrator response devices 21a to 21n. And

従監視装置5は、ネットワークNを介して応答信号の送受信に関わる通信インタフェースを行う応答処理部50と、主監視装置5からの応答信号に対応する被監視対象機器からの応答信号を監視する応答監視部51とを備える。集線装置用応答装置21a〜21nもネットワーク5を介して応答信号の送受信に関わる通信インタフェースを行う応答処理部90を備える。表示装置7も同様のネットワーク5を介して応答信号の送受信に関わる通信インタフェースを行う応答処理部70を備え、また主監視装置4の送受信部46から異常を示す警報を受信した場合、警報を発報する警報発報部71を備える。   The slave monitoring device 5 performs a response processing unit 50 that performs a communication interface related to transmission / reception of a response signal via the network N, and a response that monitors a response signal from the monitored device corresponding to the response signal from the main monitoring device 5. And a monitoring unit 51. The concentrator response devices 21 a to 21 n also include a response processing unit 90 that performs a communication interface related to transmission / reception of response signals via the network 5. The display device 7 also includes a response processing unit 70 that performs a communication interface related to transmission / reception of response signals via the same network 5, and issues an alarm when an alarm indicating abnormality is received from the transmission / reception unit 46 of the main monitoring device 4. An alarm issuing unit 71 for reporting is provided.

主監視装置4は、所定のタイミング、又は図示されない入力手段から監視応答を要求するコマンド等を入力されたタイミングに従監視装置5と集線装置用応答装置21bに応答要求信号111を応答要求部41から図5では示さないがネットワークNを介して送信する。従監視装置5と集線装置用応答装置21bとはこれに対して、それぞれ自身が正常である場合、ヘルシーである応答信号112を識別情報IDと共に返信する。主監視装置4は、正常でヘルシーの応答信号を受信した場合はこの正常な応答があったことを応答有無格納部42から応答要求部41と応答処理部40へと通知する監視信号113を送信する処理を一定時間毎に繰り返す。   The main monitoring device 4 sends a response request signal 111 to the monitoring device 5 and the concentrator response device 21b according to a predetermined timing or a timing when a command for requesting a monitoring response is input from an input means (not shown). From FIG. 5, although not shown in FIG. On the other hand, when the slave monitoring device 5 and the concentrator response device 21b are normal, they return a healthy response signal 112 together with the identification information ID. When the main monitoring device 4 receives a normal and healthy response signal, the main monitoring device 4 transmits a monitoring signal 113 for notifying the response requesting unit 41 and the response processing unit 40 that this normal response has been received. This process is repeated at regular intervals.

図6は従監視装置5に異常がある場合の応答信号の処理手順を説明する概念図である。   FIG. 6 is a conceptual diagram illustrating a response signal processing procedure when the slave monitoring device 5 has an abnormality.

図6において、従監視装置5に異常がある場合には従監視装置5からの応答信号112はなく集線装置用応答装置21bからの応答信号が有ったことを通知する信号114が応答有無格納部42から集線装置異常判定部43へ出力される。そして、集線装置異常判定部43は、上述の様に従監視装置5が異常と判断する故障分離を行う。そして、従監視装置5の異常を通知する信号117が送受信部46へ送信され、その異常を通知する警報信号118としてネットワークNを介して表示装置7へ通知され、警報発報部71で従監視装置5の異常が発報(表示)される。   In FIG. 6, when there is an abnormality in the slave monitoring device 5, there is no response signal 112 from the slave monitoring device 5 but a signal 114 for notifying that there is a response signal from the concentrator response device 21 b is stored as a response presence / absence. The data is output from the unit 42 to the concentrator abnormality determination unit 43. And the concentrator abnormality determination part 43 performs the fault isolation | separation which the monitoring apparatus 5 judges as abnormal as above-mentioned. Then, a signal 117 for notifying the abnormality of the slave monitoring device 5 is transmitted to the transmission / reception unit 46 and notified to the display device 7 through the network N as an alarm signal 118 for notifying the abnormality. An abnormality of the device 5 is reported (displayed).

図7は集線装置2bに異常がある場合の応答信号の処理手順を説明する概念図である。   FIG. 7 is a conceptual diagram illustrating a response signal processing procedure when there is an abnormality in the concentrator 2b.

図7において、集線装置2bに異常がある場合には、従監視装置5からも集線装置用応答装置21bの識別情報IDを持つ応答信号112が受信されない。そして集線装置用応答装置21bからの応答信号112がない異常を通知する信号115が応答有無格納部42から集線装置異常判定部43へ出力される。そして、集線装置異常判定部43は、従監視装置5と集線装置用応答装置21bの両方からの応答信号112がないことから集線装置2bが通信できず異常であると判定し、集線装置2bの異常を通知する信号117が送受信部46へ送信される。そして、その異常を通知する警報信号118が送受信部46からネットワークNを介して表示装置7の警報発報部71へ通知される。   In FIG. 7, when there is an abnormality in the concentrator 2 b, the response signal 112 having the identification information ID of the concentrator response device 21 b is not received from the slave monitoring device 5. Then, a signal 115 for notifying that there is no response signal 112 from the concentrator response device 21b is output from the response presence / absence storage unit 42 to the concentrator determination unit 43. Then, the concentrator abnormality determining unit 43 determines that the concentrator 2b cannot communicate because there is no response signal 112 from both the slave monitoring device 5 and the concentrator response device 21b, and the concentrator 2b A signal 117 for notifying abnormality is transmitted to the transmission / reception unit 46. Then, an alarm signal 118 notifying the abnormality is notified from the transmitting / receiving unit 46 to the alarm issuing unit 71 of the display device 7 via the network N.

図8は集線装置用応答装置21bに異常がある場合の応答信号の処理手順を説明する概念図である。   FIG. 8 is a conceptual diagram for explaining a response signal processing procedure when there is an abnormality in the concentrator response device 21b.

図8において、集線装置用応答装置21bに異常がある場合、従監視装置5からの応答信号112を受信したが集線装置用応答装置21bからの応答信号112がないことを示す異常を通知する信号116が応答有無格納部42から集線装置用応答装置異常判定部45へ出力される。そして、集線装置用応答装置異常判定部45は、集線装置用応答装置2bに異常があると判定して、その異常を通知する信号117が送受信部46へ送信され、更にその異常を通知する警報信号118がネットワークNを介して表示装置7の警報発報部71へ通知される。   In FIG. 8, when there is an abnormality in the concentrator response device 21b, a signal notifying the abnormality indicating that the response signal 112 from the slave monitoring device 5 is received but there is no response signal 112 from the concentrator response device 21b. 116 is output from the response presence / absence storage unit 42 to the concentrator response device abnormality determination unit 45. Then, the concentrator response device abnormality determination unit 45 determines that there is an abnormality in the concentrator response device 2b, a signal 117 for notifying the abnormality is transmitted to the transmission / reception unit 46, and an alarm for notifying the abnormality. The signal 118 is notified to the alarm issue unit 71 of the display device 7 via the network N.

このように従監視装置5と集線装置用応答装置21bからの応答信号の組み合わせによりどの構成が異常であるかを判定できる。主監視装置4は応答結果から異常の種類を判定し、異常判定信号117、表示装置7の警報発報部71にその異常信号118を送信する。   In this way, it is possible to determine which configuration is abnormal based on the combination of the response signals from the monitoring device 5 and the concentrator response device 21b. The main monitoring device 4 determines the type of abnormality from the response result, and transmits the abnormality determination signal 117 and the abnormality signal 118 to the alarm notification unit 71 of the display device 7.

また、図6〜図8は、1台の従監視装置5の場合についての故障分離を説明したが、複数台の場合であっても、主監視装置4は、応答要求、および応答信号に付加される識別情報IDにより各従監視装置について故障分離が可能である。   6 to 8 illustrate the fault isolation for the case of one slave monitoring device 5, but the main monitoring device 4 adds to the response request and response signal even in the case of multiple devices. Fault identification can be performed for each slave monitoring device by the identification information ID.

また、表示装置7については、従監視装置5の図示されない内蔵ディスプレイ、ランプ等の表示手段により表示装置7の異常の警報を発報する点が異なるが図6〜図8と同様の手順を実施すれば故障分離が可能である。また、図示されない予備の表示装置また、内蔵ディスプレイを備える従監視装置へ警報信号が送信され、そこで警報が発報される様にしてもよい。   Further, the display device 7 is different in that an alarm of abnormality of the display device 7 is issued by a display means such as a built-in display or a lamp (not shown) of the sub-monitoring device 5, but the same procedure as in FIGS. 6 to 8 is performed. Fault isolation is possible. Further, an alarm signal may be transmitted to a standby display device (not shown) or a slave monitoring device having a built-in display, and an alarm may be issued there.

以上述べた説明は、予め主監視装置4と従監視装置5が設定されている場合の動作説明例である。従監視装置5に、図5〜図8の主監視装置4に備えている応答処理部40、応答要求部41、応答有無格納部42、集線装置異常判定部43、監視・表示装置異常判定部44、集線装置用応答異常判定部45、送受信部46、応答監視部47の構成を備えていれば、前述の実施形態と同様の処理を従監視装置5で行うことができる。このように主監視装置4と、同様な機能部を備えている従監視装置5にあってはその設定は初期設定によるほか、所定の自己診断プログラムにより相互に選択切替が行われるものであってもよい。   The above-described explanation is an operation explanation example when the main monitoring device 4 and the slave monitoring device 5 are set in advance. The slave monitoring device 5 includes a response processing unit 40, a response request unit 41, a response presence / absence storage unit 42, a line concentrator abnormality determination unit 43, and a monitoring / display device abnormality determination unit provided in the main monitoring device 4 of FIGS. 44. If the configuration of the concentrator response abnormality determination unit 45, the transmission / reception unit 46, and the response monitoring unit 47 is provided, the slave monitoring device 5 can perform the same processing as in the above-described embodiment. As described above, in the main monitoring device 4 and the slave monitoring device 5 having the same function unit, the setting is not only made by the initial setting, but also by the predetermined self-diagnosis program, the selection switching is performed mutually. Also good.

以上述べた実施形態によれば、低コストのハブである集線装置2a〜2nを用い、従監視装置5及び又は表示装置7、集線装置2a〜2n、集線装置用応答装置21a〜21nの故障分離が迅速にできる遠隔監視システム及びその故障分離方法を提供することができる。   According to the embodiment described above, the fault isolation of the secondary monitoring device 5 and / or the display device 7, the concentrators 2a to 2n, and the concentrator response devices 21a to 21n using the concentrators 2a to 2n which are low-cost hubs. It is possible to provide a remote monitoring system and a fault isolation method thereof that can be performed quickly.

図9は、前述の実施形態の変形である実施形態を説明するためのフローチャートを示すもので、前述の実施形態の図4では、主監視装置4は従監視装置5と集線装置用応答装置2bに同時に応答要求を行っている(S1)が、図9の変形例では従監視装置5及び又は表示装置7にのみ応答要求を行う(S10)。   FIG. 9 is a flowchart for explaining an embodiment which is a modification of the above-described embodiment. In FIG. 4 of the above-described embodiment, the main monitoring device 4 is a slave monitoring device 5 and a concentrator response device 2b. At the same time, a response request is made (S1), but in the modified example of FIG. 9, a response request is made only to the slave monitoring device 5 and / or the display device 7 (S10).

そして、従視装置5及び又は、表示装置7からの応答信号があるかを判断し(S11)、ステップS11において応答信号が無い場合に集線装置用応答装置21a〜21nに対して応答要求を行い(S12)、その後集線装置用応答装置21a〜21nから応答信号があるかどうかを判断し(S13)、集線装置用応答装置21a〜21nから応答要求が無い場合、集線装置2a〜2nが異常とする(S15)。ステップS13において、集線装置用応答装置21a〜21nから応答信号があると判断すると、従監視装置5及び又は表示装置7の異常とする。   Then, it is determined whether there is a response signal from the slave device 5 and / or the display device 7 (S11), and if there is no response signal in step S11, a response request is made to the concentrator response devices 21a-21n. (S12) After that, it is determined whether or not there is a response signal from the concentrator response devices 21a to 21n (S13). If there is no response request from the concentrator response devices 21a to 21n, the concentrators 2a to 2n are abnormal. (S15). If it is determined in step S13 that there is a response signal from the concentrator response devices 21a to 21n, the slave monitoring device 5 and / or the display device 7 are regarded as abnormal.

集線装置用応答装置21a〜21nは、本来集線装置が動作しているか否かを確認するための装置であって、前述の様に単純なオウム返しの機能で済ませる場合は部品数が少なく故障やエラーの発生が少ないので、故障分離の対象から除外しても支障は少ない。   The concentrator response devices 21a to 21n are devices for confirming whether or not the concentrator is operating. When the simple parrot return function can be used as described above, the number of parts is small, Since there are few errors, there is little trouble even if it is excluded from the target of fault isolation.

変形例の実施形態は、集線装置用応答装置21a、21b、21nの監視を省略することにより異常発生時には、改めて集線装置用応答装置21bに応答要求(S12)を行うため前述の実施形態よりも異常機器特定に時間がかかるが、正常時は応答要求の数を半分に減少させることができるのでネットワークNに対する伝送量を減少させる効果がある。   In the embodiment of the modified example, when the abnormality occurs by omitting the monitoring of the concentrator response devices 21a, 21b, and 21n, a response request (S12) is made again to the concentrator response device 21b. Although it takes time to identify an abnormal device, the number of response requests can be reduced to half when normal, so there is an effect of reducing the amount of transmission to the network N.

また、上記の故障分離方法と、変形例とを切り替える様にして使用してもよい。例えば、前者の方法で監視をするうち、主監視装置4の応答処理部40が、送受信部46におけるトラフィックを監視し所定のトラフィックを超える場合、変形例に故障分離モードを変更する様に切り替える様にしてもよい。さらに、主監視装置4の図示されない入力手段からオペレータによって入力されるコマンドによって切り替える様にしてもよい。   Moreover, you may use so that said fault isolation | separation method and a modification may be switched. For example, while monitoring by the former method, when the response processing unit 40 of the main monitoring device 4 monitors the traffic in the transmission / reception unit 46 and exceeds the predetermined traffic, it is switched to change the failure isolation mode to the modified example. It may be. Furthermore, it may be switched by a command input by an operator from an input means (not shown) of the main monitoring device 4.

また、前述した実施形態の表示装置7は、従監視装置5と同様な機能を備えると共に、警報表示手段を含むものであってもよく、その警報表示手段は主監視装置4における故障分離手段が判定した異常を通知する警報信号をネットワークNを介して警報表示手段へ送信し、その警報信号を受信した場合、その異常の警報を発報するようにしてもよい。   In addition, the display device 7 of the above-described embodiment may have a function similar to that of the slave monitoring device 5 and may include an alarm display unit. The alarm display unit may be a failure separation unit in the main monitoring device 4. An alarm signal for notifying the determined abnormality may be transmitted to the alarm display means via the network N, and when the alarm signal is received, an alarm for the abnormality may be issued.

以上説明した如く、本発明の実施形態の遠隔監視システムでは、集線装置2a〜2nに通信上の識別情報IDを用いない場合であっても集線装置を含めて遠隔監視システムを構成する装置、機器の故障分離が可能なため、コストを抑えることが可能である。   As described above, in the remote monitoring system according to the embodiment of the present invention, the devices and devices constituting the remote monitoring system including the line concentrator even when the communication identification information ID is not used for the line concentrators 2a to 2n. Therefore, it is possible to reduce costs.

本発明の実施形態に関わる遠隔監視システムの構成図。1 is a configuration diagram of a remote monitoring system according to an embodiment of the present invention. 集線装置用応答装置の機能ブロック図。The functional block diagram of the response apparatus for line concentrators. 主監視装置の動作を説明するための機能ブロック図。The functional block diagram for demonstrating operation | movement of the main monitoring apparatus. 主監視装置の故障分離手順を示すフローチャート。The flowchart which shows the fault isolation | separation procedure of the main monitoring apparatus. 正常状態における応答信号の処理手順を説明する概念図。The conceptual diagram explaining the process sequence of the response signal in a normal state. 従監視装置に異常がある場合の応答信号の処理手順を説明する概念図。The conceptual diagram explaining the processing procedure of the response signal when there is an abnormality in the slave monitoring device. 集線装置に異常がある場合の応答信号の処理手順を説明する概念図。The conceptual diagram explaining the process sequence of the response signal when there is abnormality in the concentrator. 集線装置用応答装置に異常がある場合の応答信号の処理手順を説明する概念図。The conceptual diagram explaining the processing procedure of the response signal when there is an abnormality in the response device for the line concentrator. 主監視装置の故障分離手順の変形例を示すフローチャート。The flowchart which shows the modification of the fault isolation | separation procedure of a main monitoring apparatus.

符号の説明Explanation of symbols

1…伝送路、2a、2b、2n…集線装置、4…主監視装置、5…従監視装置、7…表示装置、21a、21b、21n…集線装置用応答装置、40…応答処理部、41…応答要求部、42…応答有無格納部、43…集線装置異常判定部、44…監視・表示装置異常判定部、45…集線装置用応答装置異常判定部、46…送受信部、47…応答監視部、100…ビル、N…ネットワーク   DESCRIPTION OF SYMBOLS 1 ... Transmission path, 2a, 2b, 2n ... Concentrator, 4 ... Main monitoring apparatus, 5 ... Subordinate monitoring apparatus, 7 ... Display apparatus, 21a, 21b, 21n ... Concentrator response apparatus, 40 ... Response processing part, 41 ... Response request unit, 42 ... Response presence / absence storage unit, 43 ... Concentrator abnormality determination unit, 44 ... Monitoring / display device abnormality determination unit, 45 ... Concentrator response device abnormality determination unit, 46 ... Transmission / reception unit, 47 ... Response monitoring Department, 100 ... Building, N ... Network

Claims (6)

少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置毎に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記各集線装置応答装置との間で通信可能なネットワークを備えた遠隔監視システムにおいて、
前記各集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信する送受信手段を備え、
前記従監視装置は少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を前記主監視装置に返信する送受信手段を備え、
前記主監視装置は固有の識別情報を有し、前記従監視装置及び前記従監視装置に対応する前記集線装置用応答装置とにそれぞれ応答要求を行い、前記従監視装置からの応答がなく、かつ前記集線装置用応答装置から応答がある場合は前記従監視装置が異常であると判定し、
前記主監視装置は、前記従監視装置及び前記従監視装置に対応する前記集線装置用応答装置とにそれぞれ応答要求を行い、前記従監視装置からの応答がなく、かつ前記集線装置用応答装置から応答がない場合は、前記集線装置が異常であると判定し、
前記主監視装置は、前記従監視装置及び前記従監視装置に対応する前記集線装置用応答装置とにそれぞれ応答要求を行い、前記従監視装置から応答があり、かつ前記集線装置用応答装置から応答がない場合は前記集線装置用応答装置が異常であると判定する
故障分離手段を備えることを特徴とする遠隔監視システム。
At least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, a slave monitoring device connected to each of the first concentrators, and itself A monitoring device to be monitored and a main monitoring device connected to the second concentrator, a transmission line to which the first concentrator and the second concentrator are connected, and the slave monitoring device In a remote monitoring system including a network capable of communication between the main monitoring device and each concentrator response device,
Each concentrator response device has its own identification information, and when receiving a response request signal from the main monitoring device via the network, if the device itself is healthy, a healthy signal is used as the response signal. A transmission / reception means for sending a reply to the main monitoring device via a network;
The slave monitoring device is at least one, has a device to be monitored connected to itself, and own operation monitoring and has unique identification information, and when a response request is received via the network, When self is healthy, it comprises a transmission / reception means for returning a response signal to the main monitoring device together with its own identification information,
The primary monitoring device has unique identification information, makes a response request to the secondary monitoring device and the response device for the line concentrator corresponding to the secondary monitoring device, and has no response from the secondary monitoring device, and If there is a response from the concentrator response device, it is determined that the slave monitoring device is abnormal,
The main monitoring device makes a response request to each of the slave monitoring device and the response device for the line concentrator corresponding to the slave monitoring device, there is no response from the slave monitoring device, and from the response device for the line concentrator If there is no response, determine that the concentrator is abnormal,
The master monitoring device makes a response request to the slave monitoring device and the concentrator response device corresponding to the slave monitoring device, has a response from the slave monitoring device, and responds from the concentrator response device A remote monitoring system comprising failure isolation means for determining that the concentrator response device is abnormal when there is no error.
前記従監視装置が複数台備えられる場合、前記従監視装置のうち少なくとも1台が、警報表示手段を備えた表示装置であることを特徴とする請求項1記載の遠隔監視システム。 2. The remote monitoring system according to claim 1, wherein when a plurality of slave monitoring devices are provided, at least one of the slave monitoring devices is a display device provided with an alarm display means. 前記従監視装置が複数台備えられる場合、前記従監視装置のうち少なくとも1台が、警報表示手段を備えた表示装置であって、
前記主監視装置は、前記故障分離手段が判定した異常を通知する警報信号を前記ネットワークを介して前記表示装置へ送信し、
前記表示装置は、前記警報信号を受信した場合、その異常の警報を発報することを特徴とする請求項1記載の遠隔監視システム。
When a plurality of slave monitoring devices are provided, at least one of the slave monitoring devices is a display device provided with an alarm display means,
The main monitoring device transmits an alarm signal to notify the abnormality determined by the failure separation means to the display device via the network,
The remote monitoring system according to claim 1, wherein when the alarm signal is received, the display device issues an abnormality alarm.
少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置毎に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記各集線装置応答装置との間で通信可能なネットワークを備えた遠隔監視システムにおいて、
前記集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信する送受信手段を備え、
前記従監視装置は少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して前記主監視装置から応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を前記主監視装置に返信する送受信手段を備え、
前記主監視装置は固有の識別情報を有し、前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記集線装置用応答装置から応答があった場合は当該従監視装置が異常であると判定し、
前記主監視装置は前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記対応する前記集線装置用応答装置から応答がない場合は当該集線装置が異常であると判定する故障分離手段を備えることを特徴とする遠隔監視システム。
At least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, a slave monitoring device connected to each of the first concentrators, and itself A monitoring device to be monitored and a main monitoring device connected to the second concentrator, a transmission line to which the first concentrator and the second concentrator are connected, and the slave monitoring device In a remote monitoring system including a network capable of communication between the main monitoring device and each concentrator response device,
The concentrator response devices each have unique identification information, and when the response request signal is received from the main monitoring device via the network, when the device itself is healthy, the healthy signal is used as the response signal. A transmission / reception means for replying to the main monitoring device via
The slave monitoring device is at least one, has a device to be monitored connected to itself, or monitors its own operation and has unique identification information, and sends a response request from the master monitoring device via the network If the device itself is healthy, it comprises transmission / reception means for returning a response signal to the main monitoring device together with its own identification information,
The main monitoring device has unique identification information, makes a response request to the slave monitoring device, and makes a response request to the response device for the line concentrator when there is no response from the corresponding slave monitoring device, If there is a response from the concentrator response device, it is determined that the slave monitoring device is abnormal,
The main monitoring device makes a response request to the slave monitoring device, and when there is no response from the corresponding slave monitoring device, makes a response request to the response device for the concentrator, and the corresponding response for the concentrator A remote monitoring system comprising failure isolation means for determining that the line concentrator is abnormal when there is no response from the apparatus.
少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記集線装置応答装置との間が通信可能なネットワークを備えた遠隔監視システムの故障分離方法において、
前記集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信し、
前記従監視装置は少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を前記主監視装置に返信し、
前記主監視装置は固有の識別情報を有し、前記従監視装置と前記集線装置用応答装置とに応答要求を行い、前記集線装置用応答装置から応答があり、前記従監視装置から応答がない場合は前記従監視装置が異常であると判定し、
前記主監視装置は、前記従監視装置と前記集線装置用応答装置とに応答要求を行い、前記集線装置用応答装置から応答があり、前記従監視装置と前記集線装置用応答装置の両者から応答がない場合は、前記集線装置が異常であると判定し、
前記主監視装置は、前記従監視装置と前記集線装置用応答装置とに応答要求を行い、前記従監視装置から応答があり、前記第1の集線装置用応答装置から応答がない場合は前記集線装置用応答装置が異常であると判定する
ことを特徴とする遠隔監視システムの故障分離方法。
At least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, a slave monitoring device connected to the first concentrator, and to itself A main monitoring device to which a monitored device is connected and connected to the second line concentrator, a transmission line to which the first line concentrator and the second line concentrator are connected, the sub monitoring device, and the In the fault isolation method of the remote monitoring system provided with a network capable of communication between the main monitoring device and the concentrator response device,
The concentrator response devices each have unique identification information, and when the response request signal is received from the main monitoring device via the network, when the device itself is healthy, the healthy signal is used as the response signal. To the main monitoring device via
The slave monitoring device is at least one, has a device to be monitored connected to itself, and own operation monitoring and has unique identification information, and when a response request is received via the network, If you are healthy, return a response signal to the main monitoring device along with your identification information,
The main monitoring device has unique identification information, makes a response request to the slave monitoring device and the concentrator response device, receives a response from the concentrator response device, and does not respond from the slave monitoring device In the case, it is determined that the slave monitoring device is abnormal,
The main monitoring device makes a response request to the slave monitoring device and the concentrator response device, and has a response from the concentrator response device, and responds from both the slave monitoring device and the concentrator response device. If there is no, it is determined that the concentrator is abnormal,
The main monitoring device makes a response request to the slave monitoring device and the concentrator response device, and when there is a response from the slave monitoring device and there is no response from the first concentrator response device, the concentrator A fault isolation method for a remote monitoring system, wherein it is determined that the device response device is abnormal.
少なくとも1個の第1の集線装置と、第2の集線装置と、前記集線装置毎に接続される集線装置用応答装置と、前記第1の集線装置に接続される従監視装置と、自らに被監視対象機器が接続されると共に前記第2の集線装置に接続される主監視装置と、前記第1の集線装置及び第2の集線装置が接続される伝送路と、前記従監視装置と前記主監視装置と前記集線装置応答装置との間が通信可能なネットワークを備えた遠隔監視システムの故障分離方法において、
前記集線装置用応答装置は、それぞれ固有の識別情報を有し、前記主監視装置から応答要求信号を前記ネットワークを介して受信した時、自分自身が健全である場合ヘルシー信号を応答信号として前記ネットワークを介して前記主監視装置に返信し、
前記従監視装置は、少なくとも1台であり、自らに接続される被監視対象機器、又はおよび自らの動作監視を行うと共に固有の識別情報を有し、前記ネットワークを介して前記主監視装置から応答要求を受信した場合、自分自身が健全な場合、自分自身の識別情報と共に応答信号を返信し、
前記主監視装置は固有の識別情報を有し、前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記集線装置用応答装置から応答があった場合は前記従監視装置が異常であると判定し、
前記主監視装置は前記従監視装置に応答要求を行い、前記対応する前記従監視装置から応答がない場合であって前記集線装置用応答装置に応答要求を行い、前記集線装置用応答装置から応答がない場合は前記集線装置が異常であると判定することを特徴とする遠隔監視システムの故障分離方法。
At least one first concentrator, a second concentrator, a concentrator response device connected to each of the concentrators, a slave monitoring device connected to the first concentrator, and to itself A main monitoring device to which a monitored device is connected and connected to the second line concentrator, a transmission line to which the first line concentrator and the second line concentrator are connected, the sub monitoring device, and the In the fault isolation method of the remote monitoring system provided with a network capable of communication between the main monitoring device and the concentrator response device,
The concentrator response devices each have unique identification information, and when the response request signal is received from the main monitoring device via the network, when the device itself is healthy, the healthy signal is used as the response signal. To the main monitoring device via
The slave monitoring device is at least one, has a device to be monitored connected to itself, or monitors its own operation and has unique identification information, and responds from the master monitoring device via the network If you receive a request, if you are healthy, send back a response signal along with your identity,
The main monitoring device has unique identification information, makes a response request to the slave monitoring device, and makes a response request to the response device for the line concentrator when there is no response from the corresponding slave monitoring device, If there is a response from the concentrator response device, it is determined that the slave monitoring device is abnormal,
The main monitoring device makes a response request to the slave monitoring device, and when there is no response from the corresponding slave monitoring device, makes a response request to the response device for the line concentrator and responds from the response device for the line concentrator A fault isolation method for a remote monitoring system, wherein if there is no, it is determined that the concentrator is abnormal.
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