• Title/Summary/Keyword: RCDs

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The Material Analyses and the Behavior Characteristics according to RCD Discloser (누전차단기 폭로에 따른 동작 특성 및 재료 분석)

  • Han, Woon-Ki;Kim, Hyang-Kon;Gil, Hyung-Jun;Lee, Ki-Hyun;Choi, Chung-Seog
    • Proceedings of the KIEE Conference
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    • 2005.07c
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    • pp.2019-2021
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    • 2005
  • This paper describes the cut off time and the current characteristics of virgin RCDs and deteriorated ones in the seashore. The RCDs(Residual Current Protective Devices) are used for protecting the human body from electrical shock and for preventing facility accidents. According to the Korean standards, the RCDs are installed in panel boards. When RCDs are installed outside, they must be enclosed inside waterproof cases. In the case that RCOs are employed at temporary power sites and electrical facilities on the road, they are exposed to the external environment. As a result, the RCDs deteriorated in the seashore for 3 months showed high failure rate, while the virgin RCDs all complied with Korean Standard. Considering that the RCDs are used under exposed condition outside, the reliance of RCDs must be ensured by modifying the related regulations and codes and by developing Improved models advanced in their performance.

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A Study on the Cutoff time and the Malfunction Current Characteristics of RCDs (누전차단기 동작시간 및 부동작 전류 특성)

  • Han, Woon-Ki;Shong, Gil-Mok;Kim, Yong-Seok;Kim, Dong-Wook;Choi, Chung-Seog;Lee, Bok-Yong;Park, Sang-Tae
    • Proceedings of the Korean Institute of IIIuminating and Electrical Installation Engineers Conference
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    • 2005.05a
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    • pp.61-65
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    • 2005
  • This paper describes the cut off time and the current characteristics of virgin RCDs and deteriorated ones in the seashore. The RCDs(Residual Current Protective Devices) are used for protecting the human body from electrical shock and for preventing facility accidents. According to the Korean standards, the RCDs are installed in panel boards. When RCDs are installed outside, they must be enclosed inside waterproof cases. In the case that RCDs are employed at temporary power sites and electrical facilities on the road they are exposed to the external environment. As a result, the RCDs deteriorated in the seashore for 3 months showed high failure rate, while the virgin RCDs all complied with Korean Standard. Considering that the RCDs are used under exposed condition outside, the reliance of RCDs must be ensured by modifying the related regulations and codes and by developing improved advanced in their performance.

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Analysis of RCD'S Material Degradation by Weathering Test (내후성시험에 의한 누전차단기 재질변화 분석)

  • Kim, Chong-Min;Bang, Sun-Bae;Shong, Kil-Mok;Yong, Shin-Jin;Kim, Chang-Hwan
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.59 no.2
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    • pp.232-237
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    • 2010
  • Fault rate of RCD is increasing due to deterioration and long period usage in domestic. According to Korean standards, the RCDs are installed in panel boards. When RCDs are installed at outdoor, the RCDs must be protected from uv, water etc. by using the housing. However, many RCDs are exposed to the external environment. As a results, many RCDs have malfunctions so that cause the electrical accidents. The RCDs manufactured by four makes were used as the sample to weathering test. Futhermore, those were analyzed the ingredients of RCD'S using SEM, EDX and FT-IR/TAR before and after weathering test.

A Study on the Real Condition and Life Time of the RCD (누전차단기 실태조사 및 교체주기에 관한 연구)

  • Kim, Chong-Min;Choi, Myeong-Il;Kim, Young-Seok;Bang, Sun-Bae;Shong, Kil-Mok;Seo, Jung-Youl
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.59 no.4
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    • pp.467-472
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    • 2010
  • In this study, an analysis of the used RCD's condition is conducted to assess the effect on environment of installation area, terms of use, corrosion, contamination etc. According to KS C 4613, the used RCDs were tested to get date which is the RCD's life time. And then, the date is analysed using Minitab which is a statistical program for reliability analysis. As a result, The RCD's MTTF for the all samples is $12.7{\pm}0.23$ years. and the MTTF of RCDs which are used indoor area is $12.9{\pm}0.34$ years, the MTTF of RCDs which are used outdoor area is $11.9{\pm}0.30$ years. Futhermore, the MTTF of RCDs which are used in dry area is a $13.1{\pm}0.26$ years, the MTTF of RCDs which are used in dust area is $13.0{\pm}0.57$ years, the MTTF of RCDs which are used in moisture area is $8.4{\pm}0.77$ years.

Protection Coordination Associated with Connection Location of Residual Current Devices and Surge Protective Devices (RCD와 SPD의 접속 위치에 따른 보호협조)

  • Lee, Bok-Hee;Park, Hee-Yeoul;Shin, Gun-Jin;Bae, Gwan-Young;Ryu, Chun-Hyoung;Lee, Kang-Hee
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.27 no.3
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    • pp.100-106
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    • 2013
  • In this paper, in order to analyze lightning impulse response characteristics in combined installations of SPDs and RCDs, surge protection coordination between SPDs and RCDs are experimentally investigated by using the combination wave generator. Six different types of single-phase residual current operated circuit-breakers with integral overcurrent protection for household and similar uses(RCBOs) being present on the domestic market are tested according to KS C IEC 61009-1 standard. As a result, when a class I SPD is located on the source side of an RCBO, all kinds of specimens are able to provide the proper coordination between the SPD and RCBOs without nuisance tripping, unintended operation or damage due to test impulse currents. However, in the case that the class II SPD is located on the load side of RCBOs, a lot of L-N mode injected currents is split into the RCBO, and a few RCBOs are damaged. Coordination between SPDs and RCDs is not valid and a role of SPDs is of no use. When combining SPDs with RCDs, it is necessary to select SPDs and RCDs in consideration of the protection voltage level of metal oxide varistor embedded in RCDs.

Development of Prevention Apparatus for Short-Circuit Faults Using the Line Voltage Drop of Neutral Wire (중성선 선로 전압강하를 이용한 단락사고 방지용 보호장치 개발)

  • Kwak, Dong-Kurl;Kim, Jin-Hwan;Lee, Bong-Seob
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.61 no.12
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    • pp.1953-1958
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    • 2012
  • The major causes of electrical fire are classified to short circuit fault, overload fault, electric leakage and electric contact failure. The occurrence factor of the fire is electric arc or spark accompanied with such electric faults, specially short circuit faults. Earth Leakage Circuit Breaker (ELB) and Molded_case Circuit Breaker (MCCB), that is, Residual Current Protective Devices (RCDs) used on low voltage distribution lines cut off earth leakage and overload, but the RCD can not cut off electric arc or spark to be a major factor of electrical fire. As the RCDs which are applied in low voltage distribution panel are prescribed to rated breaking time about 30ms(KS C 4613), the RCDs can't perceive to the periodic electric arc or spark of more short wavelength level. To improve such problem, this paper proposes a prevention apparatus using the line voltage drop of neutral wire and some semiconductor switching devices. Some experimental tests of the proposed apparatus confirm the validity of the analytical results.

Development of Arc Fault Circuit Interrupter Using the Distorted Voltage Wave in Electric Arc Faults (아크사고 발생 시 전압 왜형파를 이용한 아크차단기 개발)

  • Kwak, Dong-Kurl
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.6
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    • pp.876-880
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    • 2013
  • The major causes of electrical fire are classified to short circuit fault, overload fault, electric leakage and electric contact failure. The principal factor of the fire is electric arc or spark accompanied with such electric faults. Earth Leakage Circuit Breaker (ELB) and Molded_case Circuit Breaker (MCCB), that is, Residual Current Protective Devices (RCDs) used on low voltage distribution lines cut off earth leakage and overload, but the RCD can not cut off electric arc or spark to be a major factor of electrical fire. As the RCDs which are applied in low voltage distribution panel are prescribed to rated breaking time about 30[ms] (KS C 4613), the RCDs can't perceive to the periodic electric arc or spark of more short wavelength level. To improve such problems, this paper studies on an arc fault circuit interrupter (AFCI) using the distorted voltage wave in electric arc faults. The proposed voltage sensing type AFCI is an electrical fire prevention apparatus of new conception that operates a circuit breaker with sensing the instantaneous voltage drop of line voltage at electrical faults occurrence. The proposed AFCI is composed of control circuit topology using some semiconductor switching devices. Some experimental tests of the proposed AFCI confirm practicality and the validity of the analytical results.

Electric Safety Protection Device of High Speed for Incapable Operation of ELB and MCCB Using the Low Voltage Distribution Line (저압 배전선로의 누전 및 배선용 차단기의 오동작 방지를 위한 고속형 전기안전 보호장치)

  • Kwak, Dong-Kurl;Jung, Do-Young
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.11
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    • pp.1925-1929
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    • 2007
  • This paper is studied on a novel Electric Safety Protection Device (ESPD) of high speed for incapable operation of Earth Leakage Circuit Breaker (ELB) and Molded_case Circuit Breaker (MCCB) using the low voltage distribution line. The major causes of electrical fire are classified to short circuit fault, overload fault, electric leakage and electric contact failure. The occurrence factor of the fire is electric arc or spark accompanied with electrical faults. Residual Current Protective Device (RCD), that is ELB and MCCB, of high sensitivity type used at low voltage wiring cuts off earth leakage and overload, but the RCD can't cut off electric arc or spark to be a major factor of electrical fire. As the RCDs which are applied low voltage distribution panel are prescribed to rated breaking time about 30[ms] (KS C 4613), the RCDs can't perceive to the periodic electric arc or spark of more short wavelength level. To be improved on such problem, this research development is proposed to a novel ESPD of high speed to trip of distribution line on electric arc or spark due to electrical fire. Some experimental results of the proposed ESPD are confirmed to the validity of the analytical results.

A Study on Protection Device for Electrical Fire Prevention on Joint/Contact Badness Faults (접속·접촉불량 사고에 의한 전기화재 방지용 보호장치에 관한 연구)

  • Choi, Jung-Kyu;Kwak, Dong-Kurl;Lee, Seung-Chul;Lee, Bong-Seob;Park, Young-Jic
    • Proceedings of the KIPE Conference
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    • 2014.07a
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    • pp.5-6
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    • 2014
  • According to 2013 fire statistical yearbook in the National Emergency Management Agency, the main cause of an electrical fire are classified to short circuit fault, overload fault, electric leakage, partial disconnection, and joint/contact badness. The occurrence factor of fire is electric arc or spark accompanied with electrical faults. Residual Current Protective Devices(RCDs) of high sensitivity type used at single phase (220V) cut off earth leakage and overload but the RCDs can not cut off electric arc or spark to be a main cause of electrical fire. To be improved on such problem, this thesis is proposed to a auxiliary control device for RCD cut off electric arc or spark.

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A Study on Electrical Fire Disaster Prevention Device used in Double Circuit Break (고정밀 전류센서를 이용한 이중 차단용 전기화재 방재장치에 관한 연구)

  • Park, Dong-Pil;Kwak, Dong-Kurl;Jung, Do-Young;Kim, Choon-Sam;Shin, Ho-Joon
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.2102-2103
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    • 2008
  • The major causes of electrical fire are classified to short circuit fault, overload fault, electric leakage and electric contact failure. The occurrence factor of the fire is electric arc or spark accompanied with electrical faults. Residual Current Protective Device(RCD) of high sensitivity type used at low voltage wiring cuts off earth leakage and overload, but the RCD can't cut off electric arc or spark to be a major factor of electrical fire. As the RCDs which are applied low voltage distribution panel are prescribed to rated breaking time about 30[ms](KS C 4613), the RCDs can't perceive to the periodic electric arc or spark of more short wavelength level. To be improved on such problem, this paper is proposed to a electrical fire disaster prevention device(EFDPD) for a RCD trip or a self circuit-breaking function on electric arc or spark due to electrical fire. Some experimental results of the proposed apparatus is confirmed to the validity of the analytical results.

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