JPH09252526A - Power receiving and distributing facilities - Google Patents

Power receiving and distributing facilities

Info

Publication number
JPH09252526A
JPH09252526A JP8060649A JP6064996A JPH09252526A JP H09252526 A JPH09252526 A JP H09252526A JP 8060649 A JP8060649 A JP 8060649A JP 6064996 A JP6064996 A JP 6064996A JP H09252526 A JPH09252526 A JP H09252526A
Authority
JP
Japan
Prior art keywords
power
power receiving
ground fault
load switch
air load
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP8060649A
Other languages
Japanese (ja)
Other versions
JP3515271B2 (en
Inventor
Shintaro Anezaki
新太郎 姉崎
Fumiki Honma
文幾 本間
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.)
Hitachi Ltd
Original Assignee
Hitachi Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hitachi Ltd filed Critical Hitachi Ltd
Priority to JP06064996A priority Critical patent/JP3515271B2/en
Publication of JPH09252526A publication Critical patent/JPH09252526A/en
Application granted granted Critical
Publication of JP3515271B2 publication Critical patent/JP3515271B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Emergency Protection Circuit Devices (AREA)
  • Testing Of Short-Circuits, Discontinuities, Leakage, Or Incorrect Line Connections (AREA)
  • Supply And Distribution Of Alternating Current (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a power receiving and distribution facilities equipped with a circuit for preventing the nonoperation of an LBS (high-voltage air load breaker). SOLUTION: In a power receiving and distributing facilities which receive power from a power company through a power receiving line and supplies the power to a load and which are equipped with a grounding protection circuit which detects the earth current of the power receiving line by means of an earth relay 3 and automatically opens a highvoltage aerial load switch 1, the power supply start time of the said earth relay 3 is delayed at the time of remaking the high-voltage air load breaker 1 in grounding condition. Hereby, the influence of the burning of the LBS trip coil by operation trouble or an accident can be prevented.

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、受配電設備に係
り、地絡保護装置を組み込んだ自動開路機構付きの主遮
断装置を構成する高圧気中負荷開閉器を自動開路させる
方式に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a power receiving and distributing facility, and relates to a system for automatically opening a high-pressure air load switch which constitutes a main circuit breaker with an automatic circuit opening mechanism incorporating a ground fault protection device. .

【0002】[0002]

【従来の技術】受配電設備において、主遮断装置とし
て、高圧限流ヒューズと高圧気中負荷開閉器とを組み合
わせて用いるものがあり、地絡保護装置として、零相変
流器と地絡継電器とが用いられている。また、主遮断装
置を自動開路するために、高圧気中負荷開閉器には高圧
気中負荷開閉器トリップコイルが設けられている。この
回路構成において、地絡事故が発生した場合、零相変流
器により検出した地絡電流を地絡継電器により整定値と
比較し、地絡電流が整定値以上であれば、地絡継電器が
動作する。この地絡継電器の動作により、高圧気中負荷
開閉器トリップコイルが励磁され、当該高圧気中負荷開
閉器は自動開路する。このようにして、受配電設備の地
絡保護がなされていた。
2. Description of the Related Art In power distribution equipment, there is a main breaker that uses a combination of a high-voltage current limiting fuse and a high-voltage air load switch, and a ground fault protection device is a zero-phase current transformer and a ground fault relay. And are used. Further, in order to automatically open the main circuit breaker, the high pressure air load switch is provided with a high pressure air load switch trip coil. In this circuit configuration, when a ground fault accident occurs, the ground fault current detected by the zero-phase current transformer is compared with the set value by the ground fault relay, and if the ground fault current is more than the set value, the ground fault relay is Operate. By the operation of this ground fault relay, the high-voltage air load switch trip coil is excited, and the high-pressure air load switch automatically opens. In this way, the ground fault of the power receiving and distribution equipment was protected.

【0003】[0003]

【発明が解決しようとする課題】受配電設備のJIS規
格で規定している回路構成において、地絡により地絡保
護置が動作し、高圧気中負荷開閉器が自動開路後、地絡
原因を除去しないまま高圧気中負荷開閉器を手動で再投
入する場合、手動の投入速度が速いと前記高圧気中負荷
開閉器は直ちに再開路する。しかし、前記手動の投入速
度が遅いと、手動投入の操作力とトリップコイルの開路
操作力とが相殺され、高圧気中負荷開閉器が自動開路し
ない場合がある。このように、高圧気中負荷開閉器が再
開路しない場合、短時間定格である高圧気中負荷開閉器
トリップコイルが焼損するばかりでなく、受電元である
電力会社変電所への事故が波及して拡大する。
In the circuit configuration specified by the JIS standard for power distribution equipment, the ground fault protection device operates due to a ground fault, and the cause of the ground fault is detected after the high-voltage air load switch is automatically opened. When the high pressure air load switch is manually re-closed without being removed, the high pressure air load switch immediately restarts when the manual loading speed is high. However, if the manual closing speed is low, the manual closing operation force and the trip coil opening operation force may be canceled, and the high-pressure air load switch may not be automatically opened. In this way, if the high-pressure air load switch does not restart, not only the short-time rated high-pressure air load switch trip coil will burn out, but also an accident will spread to the power company substation, which is the power receiving source. To expand.

【0004】これに対して、例えば下記のような技術が
提案されている。「非接地系および高抵抗接地系で相電
圧を検出し、この検出電圧と健全時相電圧とを合成して
地絡電圧を取り出し、この地絡電圧と零相電流信号の位
相比較により、前記健全時相電圧が確立するまで間、零
相電流信号が設定値以上であることを条件に、投入した
遮断器を再開路するようにした地絡方向継電器」であ
る。これに関連するものとしては、特開平07−046
750号公報記載の技術がある。
On the other hand, for example, the following techniques have been proposed. "A phase voltage is detected by a non-grounded system and a high resistance grounded system, a ground fault voltage is taken out by combining the detected voltage and a sound time phase voltage, and the ground fault voltage and a zero phase current signal are phase-compared to each other. It is a ground fault direction relay that restarts the closed circuit breaker on condition that the zero-phase current signal is at or above the set value until the sound time phase voltage is established. " Related to this, Japanese Patent Laid-Open No. 07-046
There is a technique described in Japanese Patent Publication No. 750.

【0005】上記技術は、1相に設けた地絡検出器で、
地絡検出ができ、地絡事故中に遮断器を投入しても、確
実に動作して再開路するようにした優れたものである
が、前記の検出電圧と健全時相電圧との合成による地絡
電圧の取り出しには、遅延回路、反転回路等を必要と
し、構成か複雑となり、コストも高くなり、簡便な構成
という点では配慮が足りなかった。本発明は、かかる従
来の問題点を解決するためになされたものであり、高圧
気中負荷開閉器の投入速度が遅い場合でも、高圧気中負
荷開閉器の動作不良を防止し、再回路させる回路を備え
た受配電設備を提供することをその目的とする。
The above technique is a ground fault detector provided in one phase.
The ground fault can be detected, and even if the circuit breaker is turned on during a ground fault, it operates reliably and restarts. However, it is a combination of the above detection voltage and the sound time phase voltage. The extraction of the ground fault voltage requires a delay circuit, an inverting circuit, etc., which complicates the configuration, increases the cost, and lacks consideration in terms of a simple configuration. The present invention has been made to solve such conventional problems, and prevents malfunction of the high-pressure air load switch and re-circuit even when the closing speed of the high-pressure air load switch is slow. It is an object of the present invention to provide a power receiving and distributing facility provided with a circuit.

【0006】[0006]

【課題を解決するための手段】上記目的を解決するた
め、本発明に係る受配電設備の構成は、電力会社から受
電線路を通じて受電し、当該受電電力を負荷に供給する
受配電設備で、地絡継電器により受電線路の地絡電流を
検出し、高圧気中負荷開閉器を自動開路させる地絡保護
回路を備えた受配電設備において、地絡状態における前
記高圧気中負荷開閉器の再投入時、前記地絡継電器の電
源供給開始時を遅らせるようにしたことを特徴とするも
のである。前項記載の受配電設備において、前記高圧気
中負荷開閉器のトリップコイルに、ブザーを並列に配設
したことを特徴とするものである。前項記載のいずれか
の受配電設備において、前記高圧気中負荷開閉器のトリ
ップコイルに、開閉機構を直列に配設したことを特徴と
するものである。すなわち、要約して機能的に説明すれ
ば、本発明の目的は、地絡継電器の電源回路にディレイ
タイマを追加し、地絡継電器の電源立上り時間を遅らせ
ることにより達成される。
In order to solve the above-mentioned problems, the structure of the power receiving and distributing equipment according to the present invention is a power receiving and distributing equipment which receives power from a power company through a power receiving line and supplies the received power to a load. When the high voltage air load switch is turned on again in a ground fault condition in the power distribution equipment equipped with a ground fault protection circuit that detects the ground fault current in the power receiving line with a fault relay and automatically opens the high voltage air load switch. It is characterized in that the start of power supply to the ground fault relay is delayed. In the power distribution equipment according to the preceding paragraph, a buzzer is arranged in parallel with the trip coil of the high-pressure air load switch. In any of the power receiving and distributing equipment described in the preceding paragraph, an opening / closing mechanism is arranged in series with a trip coil of the high-pressure air load switch. That is, when summarized and functionally described, the object of the present invention is achieved by adding a delay timer to the power supply circuit of the ground fault relay and delaying the power supply rise time of the ground fault relay.

【0007】[0007]

【発明の実施の形態】以下、本発明の実施形態を図1な
いし図3により説明する。 〔実施の形態 1〕図1は、本発明の一実施形態に係る
受配電設備の3線接続図である。この受配電設備は、以
下、同様であるが、説明のため例として、1次側6.6
KV,2次側3.3KVの変圧器より3相3線式により
受配電されているものとする。
BEST MODE FOR CARRYING OUT THE INVENTION Embodiments of the present invention will be described below with reference to FIGS. [Embodiment 1] FIG. 1 is a three-wire connection diagram of a power receiving and distributing facility according to an embodiment of the present invention. This power receiving / distributing equipment is similar in the following, but as an example for explanation, the primary side 6.6.
It is assumed that power is being received and distributed by a 3-phase 3-wire system from a KV, secondary side 3.3KV transformer.

【0008】主遮断装置は、高圧限流ヒューズ付高圧気
中負荷開閉器(以下、LBSという)1は、定格7.2
KV,200A、手動操作式トリップコイル付であり、
地絡保護装置として、零相変流器(以下、ZCTとい
う)2及び地絡継電器(以下、GRYという)3を備
え、自動開路させるための装置として、高圧気中負荷開
閉器トリップコイル(以下、トリップコイルという)4
が高圧限流ヒューズ付LBS1に配設されている。
The main circuit breaker is a high-voltage air load switch (hereinafter referred to as LBS) 1 with a high-voltage current limiting fuse, and has a rating of 7.2.
KV, 200A, with a manually operated trip coil,
As a ground fault protection device, a zero-phase current transformer (hereinafter referred to as ZCT) 2 and a ground fault relay (hereinafter referred to as GRY) 3 are provided, and as a device for automatically opening a circuit, a high-voltage air load switch trip coil (hereinafter referred to as “trip coil”) , Called trip coil) 4
Are arranged in the LBS1 with a high-voltage current limiting fuse.

【0009】前記高圧限流ヒューズ付LBS1の負荷側
には、単相3線式一次3.3KV、二次側210−10
5Vの電灯用変圧器5が接続されている。そして、二次
側210−105Vに応じて出力できるターミナル(以
下、TBという)1,4,3が設けられている。
The load side of the LBS1 with a high-voltage current limiting fuse has a single-phase three-wire primary 3.3 KV and a secondary side 210-10.
A 5V electric light transformer 5 is connected. Then, terminals (hereinafter, referred to as TB) 1, 4, 3 capable of outputting according to the secondary side 210-105V are provided.

【0010】前記ZCT2は、kt、ltが1次側端子
であり、TB1,2より通常1.25mm2IV電線で
配線されている。また、前記ZCT2の二次側端子k,
lは、配線z1,z2によりGRY3の入力端子37,
38に接続されている。GRY3は、その電源端子3
1,32がタイムユニット6の出力端子64,68と直
列に接続され、接点をその間に内設する端子34,36
が、トリップコイル4の端子T1,T2とそれぞれ接続
されている。なお、トリップコイル4は、AC100V
で動作するようになつている。タイムユニット6は、前
記出力端子4,8の他に、電源用端子13、14が設け
られている。
In the ZCT2, kt and lt are primary side terminals, and are normally wired by 1.25 mm 2 IV electric wires from TB1 and TB2. In addition, the secondary side terminal k of the ZCT2,
1 is an input terminal 37 of GRY3 by wiring z1 and z2,
38. GRY3 is its power supply terminal 3
The terminals 1, 32 are connected in series with the output terminals 64, 68 of the time unit 6, and the contacts 34, 36 with the contacts internally provided therebetween.
Are connected to the terminals T1 and T2 of the trip coil 4, respectively. The trip coil 4 is AC100V.
Is supposed to work with. The time unit 6 is provided with power supply terminals 13 and 14 in addition to the output terminals 4 and 8.

【0011】前記電灯用変圧器5のAC100Vの出力
端子TB1,4は、タイムユニット6の電源用端子1
3、14とそれぞれ接続されている。また、前記出力端
子TB1は、GRY3の端子34と接続され、前記端子
4と、前記端子34と接点を介して接続される端子36
と、トリップコイル4の端子T1からT2と経て出力端
子TB4と接続されている。また、前記AC100Vの
出力端子TB1,4からでる電源線の一方には、保護用
ヒューズEF10Aが設けられている。なお、図示点線
で示すCH1は、ケーブルヘッドであり、VCTは、積
算電力用変成器である。
The AC100V output terminals TB1 and 4 of the electric light transformer 5 are power source terminals 1 of the time unit 6.
3 and 14, respectively. Further, the output terminal TB1 is connected to the terminal 34 of the GRY3, and the terminal 4 and the terminal 36 connected to the terminal 34 via a contact.
Then, the terminals T1 to T2 of the trip coil 4 are connected to the output terminal TB4. A protective fuse EF10A is provided on one of the power supply lines extending from the output terminals TB1 and TB4 of the AC100V. CH1 indicated by a dotted line in the figure is a cable head, and VCT is a transformer for integrated power.

【0012】上記構成の受配電設備の保護動作を説明す
る。まず、本実施の形態では、前記の如く、タイムユニ
ツト6を地絡継電器3の電源端子1、2に直列に接続し
ているが、そのオンディレイタイマの動作時間は、電力
会社変電所の地絡動作時間に対応して設定するが、通常
は、下記により予め設定する。タイムユニツトのタイマ
設定時間+GRY動作時間+LBS開極時間≦電力会社
変電所の地絡動作時間
A protective operation of the power receiving / distributing equipment having the above configuration will be described. First, in the present embodiment, as described above, the time unit 6 is connected in series to the power supply terminals 1 and 2 of the ground fault relay 3, but the operating time of the on-delay timer is the same as that of the power company substation. Although it is set in accordance with the closing operation time, it is usually set in advance as follows. Time unit timer setting time + GRY operation time + LBS opening time ≤ Power company substation ground fault operation time

【0013】いま、地絡事故を生じ、ZCT2により零
相電流を検出し、この零相電流がGRY3の入力端子3
7,38より入力され、且つ電源端子31,32にも電
源が供給されているので、高圧限流ヒューズ付LBS1
が開路される。次に、地絡事故がそのまま継続した状態
で、高圧限流ヒューズ付LBS1を再投入されると、Z
CT2により零相電流が検出され、この零相電流がGR
Y3の入力端子37,38より入力される。
Now, a ground fault has occurred, a zero-phase current is detected by ZCT2, and this zero-phase current is input to the input terminal 3 of GRY3.
LBS1 with high-voltage current limiting fuse, since it is input from 7, 38 and power is also supplied to the power supply terminals 31, 32.
Is opened. Next, when the LBS1 with a high-voltage current limiting fuse is turned on again while the ground fault accident continues, Z
A zero-phase current is detected by CT2, and this zero-phase current is GR
It is input from the input terminals 37 and 38 of Y3.

【0014】一方、電灯用変圧器5のAC100Vの出
力端子TB1,4間およびこれと接続されるタイムユニ
ツト6の電源用端子13、14には電源が供給される
が、タイムユニツト6のオンディレイタイマの設定時間
を経過しないと、タイムユニツト6の出力端子64,6
8からGRY3の電源端子31,32へ電源が供給され
ない。したがつて、GRY3の電源の復帰を遅らせるこ
とができる。
On the other hand, power is supplied between the output terminals TB1 and 4 of AC100V of the electric light transformer 5 and the power supply terminals 13 and 14 of the time unit 6 connected thereto, but the on-delay of the time unit 6 is delayed. If the set time of the timer does not elapse, the output terminals 64, 6 of the time unit 6
No power is supplied to the power supply terminals 31 and 32 of GRY3 from 8. Therefore, it is possible to delay the restoration of the power supply of GRY3.

【0015】したがって、高圧限流ヒューズ付LBS1
のトリップコイル4は付勢されないため、前記手動によ
る投入速度が遅い場合でも、手動投入の操作力とトリッ
プコイルの開路操作力とが相殺されことなく、高圧限流
ヒューズ付LBS1の不動作を防止することができ、前
記LBS1のトリップコイル4の焼損や電力会社変電所
への波及事故を防止できる。
Therefore, the LBS1 with a high-voltage current limiting fuse
Since the trip coil 4 is not energized, even if the manual closing speed is slow, the operation force of the manual closing and the opening operation force of the trip coil are not offset, and the LBS 1 with a high-voltage current limiting fuse is prevented from malfunctioning. Therefore, it is possible to prevent the trip coil 4 of the LBS 1 from being burnt out and the accident from spreading to the power company substation.

【0016】しかも、高圧限流ヒューズ付LBS1自体
を改良することなく、従来の回路構成に、タイムユニッ
ト6を追加するだけで、安価に且つ簡単な構成で高圧限
流ヒューズ付LBS1のトリップフリー機能が実現でき
経済的な効果も奏する。更に、高圧源流ヒューズ付LB
S1の開路操作を、タイマを用いて行なうことで、上記
した如く、電力会社変電所の地絡動作時間により短く、
タイムユニット6の動作時間を設定できるため、高圧限
流ヒューズ付LBS11の確実な開路が可能であり安全
性が高い。
Moreover, the trip-free function of the LBS1 with a high-voltage current limiting fuse is made inexpensive and simple by adding the time unit 6 to the conventional circuit configuration without improving the LBS1 with a high-voltage current limiting fuse. Can be realized and also has an economical effect. Furthermore, LB with high voltage source fuse
By performing the opening operation of S1 using the timer, as described above, it is shorter due to the ground fault operation time of the electric power company substation,
Since the operating time of the time unit 6 can be set, the LBS 11 with a high-voltage current limiting fuse can be surely opened, and the safety is high.

【0017】〔実施の形態 2〕本発明に係る他の実施
形態を図2により説明する。図2は、本発明の他の一実
施形態に係る受配電設備の3線接続図である。図中、図
1と同一符号は同等部分であるので再度の説明を省略
し、新たな符号のみを説明する。7はブザーである。本
実施形態の受配電設備は、図1の〔実施形態 1〕の説
明で述べた基本構成であり、相違点は、タイマユニツト
6を省くと共に、ブザー7を高圧限流ヒューズ付LSB
1のトリップコイル4に並列に、GRY3の電源端子3
2と出力端子36との間に接続されているところであ
る。前記図1の〔実施形態 1〕と共通する部分につい
ては説明を省略し、特徴的な部分について説明する。こ
のブザー7は、地絡事故継続状態で、高圧限流ヒューズ
付LSB1が開路後の再投入された際、当該高圧限流ヒ
ューズ付LSB1が開路しない場合、電灯用変圧器5か
ら電源供給が連続するので鳴り続ける。よって、高圧限
流ヒューズ付LSB1が不動作であることの注意を喚起
することができる。
[Embodiment 2] Another embodiment of the present invention will be described with reference to FIG. FIG. 2 is a 3-line connection diagram of a power receiving and distributing facility according to another embodiment of the present invention. In the figure, the same reference numerals as those in FIG. 1 are the same parts, and therefore, a repetitive description will be omitted and only new reference numerals will be described. 7 is a buzzer. The power receiving and distributing equipment of the present embodiment has the basic configuration described in the description of [Embodiment 1] of FIG. 1, except that the timer unit 6 is omitted and the buzzer 7 is replaced by an LSB with a high-voltage current limiting fuse.
Power supply terminal 3 of GRY3 in parallel with trip coil 4 of 1
2 and the output terminal 36. Descriptions of parts common to those of [Embodiment 1] of FIG. 1 will be omitted, and only characteristic parts will be described. This buzzer 7 is continuously supplied with power from the light transformer 5 when the LSB 1 with a high-voltage current limiting fuse is not turned on again when the LSB 1 with a high-voltage current limiting fuse is turned on again after the circuit is opened in the ground fault accident continuous state. I will continue to ring. Therefore, it is possible to call attention to the fact that the LSB 1 with a high-voltage current limiting fuse is inoperative.

【0018】〔実施の形態 3〕本発明に係るさらに他
の実施形態を図3により説明する。図3は、本発明のさ
らに他の一実施形態に係る受配電設備の3線接続図であ
る。図中、図2と同一符号は同等部分であるので再度の
説明を省略し、新たな符号のみを説明する。この受配電
設備は、基本的には、図2の〔実施形態 2〕の説明で
述べた構成であり、押釦スイッチ(以下、PBスイッチ
という)8のb接点をGRY3の出力端子36と高圧限
流ヒューズ付LSB1のトリップコイル4の端子T1間
に、当該トリップコイル4に対して、直列に接続されて
いる。前記図1の〔実施形態1〕、前記図2の〔実施形
態 2〕と共通する部分については説明を省略し、特徴
的な部分について説明する。本実施形態は、図2の〔実
施形態 2〕に示す如く、ブザー7が鳴り続けた場合、
PBスイッチ8を操作することにより、LSB1のトリ
ップコイル4の励磁が一旦リセットされ再度励磁される
ため、高圧限流ヒューズ付LSB1を開路することがで
きる。
[Embodiment 3] Still another embodiment of the present invention will be described with reference to FIG. FIG. 3 is a 3-line connection diagram of a power receiving and distributing facility according to still another embodiment of the present invention. In the figure, the same reference numerals as those in FIG. 2 are the same parts, and therefore the repetitive description will be omitted and only new reference numerals will be described. This power receiving / distributing equipment basically has the configuration described in the explanation of [Embodiment 2] in FIG. It is connected in series with the trip coil 4 between the terminals T1 of the trip coil 4 of the LSB 1 with the current fuse. Description of parts common to [Embodiment 1] of FIG. 1 and [Embodiment 2] of FIG. 2 will be omitted, and characteristic parts will be described. In this embodiment, as shown in [Embodiment 2] of FIG. 2, when the buzzer 7 continues to ring,
By operating the PB switch 8, the excitation of the trip coil 4 of the LSB 1 is once reset and re-excited, so that the LSB 1 with a high-voltage current limiting fuse can be opened.

【0019】上記各実施の形態では、地絡保護に付いて
説明したが、本発明はこれに限定されるものでなく、過
電流保護にも同様に、地絡継電器を過電流継電器に置き
換えることにより、適用可能である。また、上記実施形
態における3線接続図に本発明は限定されるものでな
く、他の方式の3相3線式受配電設備に適用することが
できる。
In each of the above embodiments, the ground fault protection has been described. However, the present invention is not limited to this, and similarly for overcurrent protection, the ground fault relay is replaced with an overcurrent relay. It is applicable by Further, the present invention is not limited to the three-wire connection diagram in the above-described embodiment, and can be applied to another type of three-phase three-wire power receiving and distributing equipment.

【0020】[0020]

【発明の効果】以上説明した如く、本発明の構成によれ
ば、LSBの動作不良の防止が可能であり、LSBトリ
ップコイルの焼損や電力会社変電所への波及事故を防止
できる受配電設備を提供することができる。しかも、L
SB自体を改良することなく、安価にLSBのトリップ
フリー機能が実現でき、経済的な効果もある。更に、電
力会社変電所の地絡動作時間により、タイマの動作時間
を設定できるため、LSBの確実な開路が可能であり安
全性を高める効果もある。
As described above, according to the structure of the present invention, it is possible to prevent the malfunction of the LSB, prevent the LSB trip coil from being burned, and prevent the transmission accident to the power company substation. Can be provided. Moreover, L
The trip-free function of the LSB can be realized at low cost without improving the SB itself, and there is also an economical effect. Furthermore, since the operating time of the timer can be set according to the ground fault operating time of the electric power company substation, the LSB can be surely opened and safety is also enhanced.

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

【図1】本発明の一実施形態に係る受配電設備の3線接
続図である。
FIG. 1 is a 3-line connection diagram of a power receiving and distributing facility according to an embodiment of the present invention.

【図2】本発明の他の一実施形態に係る受配電設備の3
線接続図である。
FIG. 2 is a diagram of a power receiving / distributing facility according to another embodiment of the present invention.
It is a line connection diagram.

【図3】本発明のさらに他の一実施形態に係る受配電設
備の3線接続図である。
FIG. 3 is a 3-line connection diagram of a power receiving and distributing facility according to still another embodiment of the present invention.

【符号の説明】[Explanation of symbols]

1…高圧限流ヒューズ付LSB,2…ZCT,3…GR
Y,4…LSBのトリップコイル,5…電灯変圧器,6
…タイムユニット,7…ブザー,8…PBスイッチ
1 ... LSB with high-voltage current limiting fuse, 2 ... ZCT, 3 ... GR
Y, 4 ... LSB trip coil, 5 ... Light transformer, 6
... Time unit, 7 ... Buzzer, 8 ... PB switch

───────────────────────────────────────────────────── フロントページの続き (51)Int.Cl.6 識別記号 庁内整理番号 FI 技術表示箇所 H02J 3/00 H02J 3/00 J ─────────────────────────────────────────────────── ─── Continuation of the front page (51) Int.Cl. 6 Identification code Internal reference number FI Technical indication H02J 3/00 H02J 3/00 J

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 電力会社から受電線路を通じて受電し、
当該受電電力を負荷に供給する受配電設備で、地絡継電
器により受電線路の地絡電流を検出し、高圧気中負荷開
閉器を自動開路させる地絡保護回路を備えた受配電設備
において、 地絡状態における前記高圧気中負荷開閉器の再投入時、
前記地絡継電器の電源供給開始時を遅らせるようにした
ことを特徴とする受配電設備。
1. Power is received from a power company through a power receiving line,
In the power distribution equipment that supplies the received power to the load, in the power distribution equipment equipped with the ground fault protection circuit that detects the ground fault current of the power receiving line by the ground relay and automatically opens the high voltage air load switch, When the high pressure air load switch is turned on again in the closed state,
A power receiving and distributing facility characterized in that the start of power supply to the ground fault relay is delayed.
【請求項2】 請求項1記載の受配電設備において、 前記高圧気中負荷開閉器のトリップコイルに、ブザーを
並列に配設したことを特徴とする受配電設備。
2. The power distribution equipment according to claim 1, wherein a buzzer is arranged in parallel with the trip coil of the high-pressure air load switch.
【請求項3】 請求項1、2記載のいずれかの受配電設
備において、 前記高圧気中負荷開閉器のトリップコイルに、開閉機構
を直列に配設したことを特徴とする受配電設備。
3. The power distribution equipment according to claim 1, wherein an opening / closing mechanism is arranged in series with a trip coil of the high-pressure air load switch.
JP06064996A 1996-03-18 1996-03-18 Power distribution equipment Expired - Fee Related JP3515271B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP06064996A JP3515271B2 (en) 1996-03-18 1996-03-18 Power distribution equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP06064996A JP3515271B2 (en) 1996-03-18 1996-03-18 Power distribution equipment

Publications (2)

Publication Number Publication Date
JPH09252526A true JPH09252526A (en) 1997-09-22
JP3515271B2 JP3515271B2 (en) 2004-04-05

Family

ID=13148401

Family Applications (1)

Application Number Title Priority Date Filing Date
JP06064996A Expired - Fee Related JP3515271B2 (en) 1996-03-18 1996-03-18 Power distribution equipment

Country Status (1)

Country Link
JP (1) JP3515271B2 (en)

Also Published As

Publication number Publication date
JP3515271B2 (en) 2004-04-05

Similar Documents

Publication Publication Date Title
US4477855A (en) Protecting system for transmission lines
JP2009142136A (en) Protective relay with inverse-time element and protecting method of electric power system
JPH08126210A (en) Parallel off control device for commercial power supply linkage private generator
JP7218497B2 (en) Ground fault protection relay system
JP2728398B2 (en) Spot network power receiving substation protection device
JP3515271B2 (en) Power distribution equipment
JP3480671B2 (en) Bus protection system for spot network power receiving equipment
US3423634A (en) Differential relaying network
JPH1066265A (en) Method for operating power system
JP3223302B2 (en) Power system protection device
Brewis et al. Theory and practical performance of interlocked overcurrent busbar zone protection in distribution substations
JP2592815B2 (en) High voltage load switch
JP3169849B2 (en) Spot network substation protection equipment
JPH10112931A (en) High-speed current limiting breaker for gas turbine
JP2558585B2 (en) Grid interconnection protection detector
JP2623933B2 (en) Gas switchgear
Dudor et al. Protective relaying on medium and high voltage systems, some lessons to be learned
JPH0214283Y2 (en)
JPH03276099A (en) Auxiliary power unit
JP2691692B2 (en) Grid connection protection device
JP2550006B2 (en) Distribution line protection relay device
JPH0119558Y2 (en)
JP2000032648A (en) Circuit breaker malfunctioning countermeasure device
JPH08317550A (en) Spot network power receiving equipment
JPH01243814A (en) Protective-device for circuit reclosure

Legal Events

Date Code Title Description
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20040113

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20040115

LAPS Cancellation because of no payment of annual fees