• Title/Summary/Keyword: Resistive leakage current

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Development of an Earth Leakage Breaker Operating by Resistive Leakage Current using a Resetable Integrator (적분기를 이용한 저항성 누전전류 작동방식 누전차단기 개발)

  • Ham, Seung-Jin;Hahn, Song-Yop;Koh, Chang-Seop
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.917-918
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    • 2007
  • The former earth leakage breaker is operating by total leakage current which is the vector-sum of resistive leakage current and capacitive leakage current. However, the electric disaster like the electric shock and fire is caused mainly by resistive leakage current. Therefore, the earth leakage breaker is ideal when it is operating by resistive leakage current. In this paper, the theory for finding the component of resistive leakage current from total leakage current is suggested and it is embodied to actual circuit. The resistive leakage current can be found by integrating the total leakage current during half cycle of line voltage. Thus, we can simply find resistive leakage current by using OP-AMP integrators, and we can confirm that the resistive leakage current is computed exactly from total leakage current obtained by resistive leakage current and capacitive leakage current. The results that the earth leakage breaker is operating within regular interrupt time are verified when the former earth leakage breaker's controller circuit is replaced by the proposed controller circuit.

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A New Method for Resistive Leakage Current Measurement (새로운 저항성 누전전류 측정 방법)

  • Ham, Seung-Jin;Hahn, Song-Yop;Koh, Chang-Seop
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.8
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    • pp.1397-1404
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    • 2007
  • It is important to measure the resistive component separately from the total leakage current at power distribution line. It is because electric disasters such as electric shock and fire are caused mainly by the resistive component of the total leakage current. In this paper, a new theory for measuring the resistive component separately from the total leakage current is suggested, and is embodied to an actual circuit using operational amplifiers, analog switch and R-C low pass filter. Through experiments for various cases containing both the resistive and capacitive leakage currents, the suggested algorithm is confirmed to be able to measure the resistive leakage current within 4.1% of error even when the capacitive leakage current is much bigger than the resistive one. The suggested method is expected to lower the total cost because it can be realized using simple and cheap devices, and implies the measuring time can be possibly reduced because the resistive leakage current is computed exactly from the signals during only a half period of power voltage.

Measurement Device of Resistive Leakage Current for Arrester Deterioration Diagnosis (피뢰기 열화진단을 위한 저항분 누설전류의 측정장치)

  • 길경석;한주섭;김정배
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.52 no.10
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    • pp.469-475
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    • 2003
  • Resistive leakage current flowing ZnO blocks increases with its ages, which is an important indicator of arrester deterioration. However, a complicated circuitry is essential to measure the resistive leakage current included in the total leakage current, and the difficult handling of the measurement makes few applications to the fields. In this paper, we propose a resistive leakage current measurement device which is composed of a current detection circuit and an analysis program operated on a microprocessor. The device samples the input leakage current waveform digitally, and discriminate the zero-cross and the peak point of the waveform to analyze the current amplitude vs. phase. The capacitive leakage current is then eliminated from the total leakage current by using an algorithm to extract the resistive leakage current only. Also, the device can be operated automatically and manually to analyze the resistive leakage current even when the leakage current waveform is distorted due to various types of arrester deterioration. To estimate the performance of the device, we carried out a test on ZnO blocks and lightning arresters. From the results, it is confirmed that the device could analyze most parameters needed for the arrester diagnostics such as total leakage current. resistive leakage current, and the $3^rd$ harmonic leakage current.

The New Residual Current Protective Devices Operating by Resistive Leakage Current (저항성 누전전류에 의하여 동작하는 새로운 누전차단기)

  • Ham, Seung-Jin;Hahn, Song-Yop;Koh, Chang-Seop
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.57 no.2
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    • pp.198-207
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    • 2008
  • The conventional Residual Current Protective Devices(RCD, or earth leakage circuit breaker, ELB) operates depending on the total leakage current which is the vector-sum of resistive and capacitive components of a leakage current. However, the electric disaster such as electric shock or fire is mainly caused by the resistive component. Therefore, in this view point, the RCD is more realistic when it operates by the resistive component of the leakage current. In this paper, a new algorithm for measuring the resistive leakage current from the total leakage current is suggested, and is realized to an actual circuit. According to the suggested algorithm, the resistive component of the leakage current can be found by integrating the total leakage current over only a half cycle of the line voltage, and it is realized by using analog switches and resettable integrators. It is confirmed through experiments that the suggested algorithm detects, within maximum average error of 6.74%, the resistive leakage current from the total leakage current, and the RCD employing the suggested algorithm brakes the circuit within the regular interrupt time(30msec).

Development and Safety Estimation of Resistive Leakage Current(Igr) of Detection Outlet (저항성 누설전류(Igr) 검출 콘센트의 개발 및 안전성 평가)

  • Kim, Chang-Soung;Hanh, Song-Yop;Choi, Chung-Seog
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.58 no.2
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    • pp.221-226
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    • 2009
  • In this paper, we analyzed form of flowing leakage current in electrical installation. Leakage current ($I_g$) is consisted of resistive leakage current($I_{gr}$), capacitive leakage current($I_{gc}$), and inductive leakage current($I_{gl}$). Resistive leakage current($I_{gr}$) is big occasion than capacitive leakage current($I_{gc}$) in system, Residual Current Protective Device(RCD) detects correctly leakage current. But,$I_{gc}$ is big occasion than $I_{gr}$, RCD is malfunctioned It is resistance to lead to electric fire in electrical device. We manufactured outlet that resistive leakage current detecting circuit is had. Manufactured outlet displayed performance exactly in leakage current of 5 mA Therefore, this product estimates that contribute on electric fire courtesy call.

Development of the Leakage Current Detection Module for a Concent (콘센트용 누전감지 모듈 개발)

  • Han, Young-Oh
    • The Journal of the Korea institute of electronic communication sciences
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    • v.8 no.3
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    • pp.447-452
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    • 2013
  • In this paper, the leakage current detection and auto shut-off module for a concent has been developed. Existing leakage current detection modules are detecting resistive leakage current, using a resistive leakage current detection chip but the proposed leakage current detection module separates and detects resistive leakage current in the synthesis leakage current by only programming in a power processor MCU(MSP430). The module implemented by proposed method has early detection and auto shut-off feature at more than resistive leakage current 5mA, and has the advantage of easily adjusting resistive leakage current less or more than 5mA, because of resistive leakage current detection function being implemented by a program in MCU.

Correlation between the resistive and the $3^{rd}$ harmonic leakage current of ZnO arresters (ZnO 피뢰기의 저항분 누설전류와 제 3고조파 누설전류의 관계)

  • Kim, Il-Kwon;Song, Jae-Yong;Moon, Seung-Bo;Cha, Myung-Soo;Kil, Gyung-Suk
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.06a
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    • pp.515-516
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    • 2006
  • The resistive leakage current is an important parameter for arrester diagnosis. However, the 3rd harmonic leakage current is more widely used than the resistive one because of its easy measurement. In this paper, we studied the correlation between the resistive and the $3^{rd}$ harmonic leakage current of ZnO arresters. The resistive leakage current was measured according to the IEC 60099-5 in AC applied voltage. The $3^{rd}$ harmonic leakage current was analyzed by using a designed band-pass filter having 180 [Hz]-center frequency and 10 [Hz]-bandwidth. The experimental results show that the $3^{rd}$ harmonic leakage current changes proportionally with the resistive leakage current variation under the maximum continuous operating voltage (MCOV).

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New Measurement Technique of the Resistive Leakage Current for Arrester Diagnosis (피뢰기 진단을 위한 저항분 누설전류의 새로운 측정기법)

  • Kil, G.S.;Han, J.S.;Song, J.Y.;Park, D.W.;Seo, H.D.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.05b
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    • pp.73-75
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    • 2004
  • Resistive leakage current following arresters is an important indicator of ageing, but total leakage current and its harmonic analysis are widely used in diagnosing arrester soundness because of difficulties in measuring resistive leakage current. In this paper, we proposed a new method for measuring resistive leakage current, which is quite different from the conventional methods such as a self-cancel method and a synchronous rectification method. The proposed method is based on that the magnitudes of resistive leakage currents are equal at the same voltage level. To confirm the possibility of the proposed method. we fabricated a leakage current measurement device and designed an analysis program that can analyze resistive leakage current. Comparing with other methods. this technique does not need a complex circuitry and is very simple to complete.

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Measurement Method of the Resistive Leakage Current for Lightning Arrester Diagnosis

  • Kil, Gyung-Suk;Han, Ju-Seop;Song, Jae-Yong;Seo, Hwang-Dong
    • Transactions on Electrical and Electronic Materials
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    • v.6 no.2
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    • pp.63-66
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    • 2005
  • Several ways for monitoring the soundness of ZnO lightning arresters have been suggested, and all of which are based on the measurement of leakage current since it is well known that the resistive leakage current is a main indicator of arrester deterioration. In this paper, we proposed an algorithm to measure the resistive leakage current, which is quite different from the conventional method that eliminates capacitive current from the total leakage current. The proposed algorithm is based on that the magnitudes of the resistive leakage current are equal at the same applied voltage levels. To confirm the reliability of the algorithm, we fabricated a leakage current detector and designed an analysis program. Experimental results showed that the method does not need a complex circuitry and is useful to analyze the resistive leakage current.

The Effectiveness Analysis of the Resistive Leakage Current Monitoring by Analyzing the Phase of the Body Current (인체 통전전류 위상 분석을 통한 저항성 누설전류 감시의 유효성 분석)

  • Kim, Jae-Hyun;Lim, Young-Bea;Lee, Sang-Ick;Kim, Dong-Woo
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.27 no.9
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    • pp.90-99
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    • 2013
  • To analyze the effectiveness of the resistive leakage current monitoring as a technology preventing electrical accidents, in this paper, we have estimated the phase of the body impedance by using the body impedance model and the body impedance data from IEC. We also have analyzed the phase of the electric body current in the case of 60Hz/220V. From these results, we concluded that deliberate researches about the phase of the electrical body current and related regulations must be carried out before the resistive leakage current monitoring unit is used to protect electric shock. And we concluded that the resistive leakage current monitoring unit can be utilized to prevent electrical fires caused by electric leakage current without unwanted circuit break due to capacitive leakage current flowing from line filter capacitors to the earth.