JPH07333279A - Leakage test equipment - Google Patents
Leakage test equipmentInfo
- Publication number
- JPH07333279A JPH07333279A JP6130714A JP13071494A JPH07333279A JP H07333279 A JPH07333279 A JP H07333279A JP 6130714 A JP6130714 A JP 6130714A JP 13071494 A JP13071494 A JP 13071494A JP H07333279 A JPH07333279 A JP H07333279A
- Authority
- JP
- Japan
- Prior art keywords
- rectifier
- leakage test
- rail
- measured
- main rectifier
- 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
Links
Landscapes
- Testing Of Short-Circuits, Discontinuities, Leakage, Or Incorrect Line Connections (AREA)
Abstract
Description
【0001】[0001]
【産業上の利用分野】この発明は、直流式電気鉄道のき
電線とレール間の漏れ電流を測定するための漏洩試験装
置に関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a leakage test apparatus for measuring a leakage current between a feeder and a rail of a DC electric railway.
【0002】[0002]
【従来の技術】従来直流式電気鉄道用き電設備において
は、電車線(き電線)とレール間の漏れ電流を測定する
ことにより、電車線の絶縁劣化の判定及び異物等による
接触等を検出していた。この漏れ電流を測定するには、
例えば図2に示すような漏洩試験装置が用いられてい
た。2. Description of the Related Art In the conventional DC type electric railway feeder equipment, the leakage current between the electric power line (rail line) and the rail is measured to determine the insulation deterioration of the electric power line and to detect the contact due to foreign matter. Was. To measure this leakage current,
For example, a leak test device as shown in FIG. 2 has been used.
【0003】図2において、1は変電所の交流電力を直
流に変換する主整流器である。この主整流器1の出力電
力は直流高速度遮断器2a〜2dを介してき電線3a〜
3dに供給される。4a,4bはき電線区分用のデッド
セクションである。主整流器1の負極は断路器5を介し
て図示しないレールに接続されている。In FIG. 2, reference numeral 1 is a main rectifier for converting AC power of a substation into DC. The output power of the main rectifier 1 is fed through the DC high-speed circuit breakers 2a to 2d to the feeder line 3a to
Is supplied to 3d. 4a and 4b are dead sections for dividing feeder lines. The negative electrode of the main rectifier 1 is connected to a rail (not shown) via a disconnector 5.
【0004】漏洩試験用の低圧電源(図示省略)の交流
電力は交流側の電磁接触器6および昇圧トランス7を介
して漏洩試験用の整流器8に導かれる。整流器8の整流
出力はリアクトル9およびコンデンサ10から成るフィ
ルタ回路11で平滑される。フィルタ回路11の直流出
力電流はき電線接続用の電磁接触器15a〜15dを介
して前記き電線3a〜3dに供給される。前記整流器8
の負極はレール(図示省略)に接続されている。フィル
タ回路11の正負出力端間には抵抗12および直流電圧
計13が直列に接続されている。前記フィルタ回路11
と電磁接触器15a〜15dを結ぶ電路には電流検出用
のホールCT14が介挿されている。16は直流電流計
である。AC power of a low-voltage power supply (not shown) for a leak test is introduced to a rectifier 8 for a leak test via an electromagnetic contactor 6 and a step-up transformer 7 on the AC side. The rectified output of the rectifier 8 is smoothed by the filter circuit 11 including the reactor 9 and the capacitor 10. The DC output current of the filter circuit 11 is supplied to the feeders 3a to 3d through the electromagnetic contactors 15a to 15d for connecting the feeders. The rectifier 8
The negative electrode of is connected to a rail (not shown). A resistor 12 and a DC voltmeter 13 are connected in series between the positive and negative output terminals of the filter circuit 11. The filter circuit 11
A hole CT14 for current detection is inserted in an electric path connecting between the magnetic contactors 15a to 15d. 16 is a direct current ammeter.
【0005】[0005]
【発明が解決しようとする課題】上記のように構成され
た装置では、漏洩試験装置専用の電源(電源、電磁接触
器6、昇圧トランス7、整流器8等)としては、直流式
電気鉄道の性格上、定格DC1500ボルト、0.1ア
ンペアが必要となる。このため装置が大型化するととも
に装置価格の高騰を招いていた。In the apparatus constructed as described above, the characteristics of the DC electric railway are used as the power source (power source, electromagnetic contactor 6, step-up transformer 7, rectifier 8, etc.) exclusively for the leakage test apparatus. Also, a rated DC 1500 volt, 0.1 amp is required. Therefore, the size of the device is increased and the price of the device is soared.
【0006】本発明は上述の点に鑑みてなされたもので
その目的は、専用の整流器等の電源設備を不要とした漏
洩試験装置を提供することにある。The present invention has been made in view of the above points, and an object thereof is to provide a leakage test apparatus that does not require a power supply facility such as a dedicated rectifier.
【0007】[0007]
【課題を解決するための手段】本発明は、直流電源の出
力電力を直流遮断器を介してき電線とレール間に供給す
る直流式電気鉄道の漏洩試験装置において、前記直流電
源の主整流器の負極とレールを結ぶ電路に第1の開閉機
器を介挿し、前記第1の開閉機器に、第2の開閉機器と
抵抗値を任意に切り替える可変抵抗部と電流測定器とか
ら成る直列回路を並列に接続したことを特徴としてい
る。DISCLOSURE OF THE INVENTION The present invention is a leakage test apparatus for a DC type electric railway, which supplies the output power of a DC power source between a feeder and a rail via a DC circuit breaker, wherein a negative electrode of a main rectifier of the DC power source is used. A first switchgear is inserted in an electric path connecting the rail and a rail, and a series circuit including a second switchgear and a variable resistance part for arbitrarily switching a resistance value and a current measuring device is connected in parallel to the first switchgear. It is characterized by being connected.
【0008】[0008]
【作用】漏洩試験を行うにはまず第1の開閉機器を開放
し、第2の開閉機器を投入する。そして主整流器を運転
して直流遮断器を投入し、可変抵抗部の抵抗値を切り替
えたときの直列回路に流れる電流を電流測定器で測定す
ることによって、漏れ電流のデータが得られる。漏洩試
験時の電源は、主整流器を用いているので専用の他の電
源装置を設ける必要は無い。To perform the leakage test, first, the first switchgear is opened and the second switchgear is turned on. Then, the main rectifier is operated to turn on the DC circuit breaker, and the current flowing through the series circuit when the resistance value of the variable resistance portion is switched is measured by the current measuring device, whereby the leakage current data can be obtained. Since the main rectifier is used as the power supply during the leakage test, it is not necessary to provide another dedicated power supply device.
【0009】[0009]
【実施例】以下、本発明の一実施例を図面を参照しなが
ら説明する。本実施例では前述した図2の電磁接触器
6,15a〜15d、昇圧トランス7および整流器8を
除去し、図1のように構成した。図1において図2と同
一部分は同一符号をもって示している。前記断路器5の
両端間には、電磁接触器21、抵抗31,32,33お
よびフィルタ回路11のリアクトル9が直列に接続され
ている。前記抵抗31,32,33には電磁接触器2
2,23,24が各々並列に接続されている。前記リア
クトル9とレールを結ぶ電路にはホールCT14が介挿
され、その出力側には直流電流計16が接続されてい
る。フィルタ回路11のコンデンサ10の両端間には、
抵抗12および直流電圧計13が直列に接続されてい
る。直流電圧計13と前記主整流器1の正極端の間には
ヒューズ40が接続されている。DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described below with reference to the drawings. In this embodiment, the electromagnetic contactors 6, 15a to 15d, the step-up transformer 7 and the rectifier 8 shown in FIG. 1, the same parts as those in FIG. 2 are indicated by the same reference numerals. An electromagnetic contactor 21, resistors 31, 32, 33 and a reactor 9 of the filter circuit 11 are connected in series between both ends of the disconnector 5. An electromagnetic contactor 2 is provided for the resistors 31, 32, 33.
2, 23 and 24 are respectively connected in parallel. A Hall CT 14 is inserted in the electric path connecting the reactor 9 and the rail, and a DC ammeter 16 is connected to the output side thereof. Between both ends of the capacitor 10 of the filter circuit 11,
The resistor 12 and the DC voltmeter 13 are connected in series. A fuse 40 is connected between the DC voltmeter 13 and the positive terminal of the main rectifier 1.
【0010】上記のように構成された装置において、漏
洩試験を行うにはまず断路器5を開放し、電磁接触器2
1を投入する。次に主整流器1を運転して直流高速度遮
断器2aを投入し、そのとき流れる直流電流を直流電流
計16で測定する。そしてその電流が規定値以下であれ
ば次に電磁接触器22,23,24を順次オンし、その
ときに流れる電流を直流電流計16で各々測定する。ま
たコンデンサ10の電圧を直流電圧計13によって測定
し、これら電圧、電流によって漏れ電流のデータを取
り、さらに電磁接触器21〜24を総てオンした状態で
前記電圧計13、電流計16により電圧、電流を測定
し、漏れ電流の確認を行う。In the apparatus constructed as described above, in order to perform a leakage test, first the disconnector 5 is opened and the electromagnetic contactor 2 is opened.
Input 1. Next, the main rectifier 1 is operated to turn on the DC high-speed circuit breaker 2a, and the DC current flowing at that time is measured by the DC ammeter 16. If the current is less than the specified value, the electromagnetic contactors 22, 23, 24 are turned on next and the currents flowing at that time are measured by the DC ammeter 16. Further, the voltage of the capacitor 10 is measured by the DC voltmeter 13, the data of the leakage current is obtained by the voltage and the current, and the voltage is measured by the voltmeter 13 and the ammeter 16 with all the magnetic contactors 21 to 24 turned on. Measure the current and check the leakage current.
【0011】上記の動作を直流高速度遮断器2b〜2d
についても各々実施し、き電線の漏れ電流を測定する。
このように漏洩試験時の電源として専用の他の電源装置
を設ける必要は無く、既設の主整流器1を用いて確実に
漏洩試験を行うことができる。The above operation is performed by the DC high speed circuit breakers 2b to 2d.
For each of the above, and measure the leakage current of the feeder.
As described above, it is not necessary to provide another dedicated power supply device as a power supply for the leakage test, and the leakage test can be reliably performed using the existing main rectifier 1.
【0012】尚第1、第2の開閉機器は断路器5、電磁
接触器21に限らず、他の開閉機器を用いても良い。ま
た可変抵抗部は、前記実施例のように抵抗31〜33の
各両端を電磁接触器22〜24により各々短絡、開放す
るに限らず、抵抗値を任意に切り替えることができる他
の手段で構成しても良い。The first and second switching devices are not limited to the disconnecting switch 5 and the electromagnetic contactor 21, but other switching devices may be used. Further, the variable resistance portion is not limited to short-circuiting and opening the both ends of the resistors 31 to 33 by the electromagnetic contactors 22 to 24 as in the above-described embodiment, but is constituted by other means capable of arbitrarily switching the resistance value. You may.
【0013】[0013]
【発明の効果】以上詳述したように本発明によれば、直
流電源の主整流器の負極とレールを結ぶ電路に第1の開
閉機器を介挿し、前記第1の開閉機器に、第2の開閉機
器と抵抗値を任意に切り替える可変抵抗部と電流測定器
とから成る直列回路を並列に接続したので、漏洩試験装
置専用の整流器等の電源設備が不要となり、このため装
置全体が小型化し、装置価格を低廉化することができ
る。As described above in detail, according to the present invention, the first switchgear is inserted in the electric path connecting the negative electrode of the main rectifier of the DC power supply and the rail, and the first switchgear is provided with the second switchgear. Since a series circuit consisting of a switchgear and a variable resistance part that arbitrarily switches the resistance value and a current measuring device was connected in parallel, a power supply facility such as a rectifier dedicated to the leakage test device was not required, so the entire device was downsized, The device price can be reduced.
【図面の簡単な説明】[Brief description of drawings]
【図1】本発明の一実施例を示す回路図。FIG. 1 is a circuit diagram showing an embodiment of the present invention.
【図2】従来の直流式電気鉄道の漏洩試験装置の一例を
示す回路図。FIG. 2 is a circuit diagram showing an example of a conventional leakage test device for a DC electric railway.
1…主整流器 2a〜2d…直流高速度遮断器 3a〜3d…き電線 5…断路器 11…フィルタ回路 13…直流電圧計 14…ホールCT 16…直流電流計 21〜24…電磁接触器 31〜33…抵抗 40…ヒューズ DESCRIPTION OF SYMBOLS 1 ... Main rectifier 2a-2d ... DC high-speed circuit breaker 3a-3d ... Feeder wire 5 ... Disconnector 11 ... Filter circuit 13 ... DC voltmeter 14 ... Hall CT 16 ... DC ammeter 21-24 ... Electromagnetic contactors 31-33 … Resistor 40… Fuse
Claims (1)
てき電線とレール間に供給する直流式電気鉄道の漏洩試
験装置において、前記直流電源の主整流器の負極とレー
ルを結ぶ電路に第1の開閉機器を介挿し、前記第1の開
閉機器に、第2の開閉機器と抵抗値を任意に切り替える
可変抵抗部と電流測定器とから成る直列回路を並列に接
続したことを特徴とする漏洩試験装置。1. A leakage test apparatus for a DC type electric railway, which supplies the output power of a DC power supply between a feeder and a rail via a DC circuit breaker, wherein a first electric line is provided in a circuit connecting a negative electrode of a main rectifier of the DC power supply and the rail. Leakage, characterized in that the switching device is inserted, and the first switching device is connected in parallel with the second switching device and a series circuit composed of a variable resistance section for arbitrarily switching the resistance value and a current measuring device. Test equipment.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6130714A JPH07333279A (en) | 1994-06-14 | 1994-06-14 | Leakage test equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6130714A JPH07333279A (en) | 1994-06-14 | 1994-06-14 | Leakage test equipment |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH07333279A true JPH07333279A (en) | 1995-12-22 |
Family
ID=15040874
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP6130714A Pending JPH07333279A (en) | 1994-06-14 | 1994-06-14 | Leakage test equipment |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH07333279A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110045276A (en) * | 2019-05-10 | 2019-07-23 | 国网上海市电力公司 | Disconnecting switch load characteristic detection system in a kind of GIS device |
CN112222017A (en) * | 2020-09-15 | 2021-01-15 | 太仓市晨启电子精密机械有限公司 | Multi-station parallel testing device for rectifier bridge |
-
1994
- 1994-06-14 JP JP6130714A patent/JPH07333279A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110045276A (en) * | 2019-05-10 | 2019-07-23 | 国网上海市电力公司 | Disconnecting switch load characteristic detection system in a kind of GIS device |
CN112222017A (en) * | 2020-09-15 | 2021-01-15 | 太仓市晨启电子精密机械有限公司 | Multi-station parallel testing device for rectifier bridge |
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