• Title/Summary/Keyword: Overcurrent Relay

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Fault Detection and Classification of Hi9h Impedance Fault using Wavelet Transform (웨이브렛 변환을 이용한 고저항 지락사고 검출 및 판별)

  • Ko, Y.H.;Kim, C.H.;Kim, H.
    • Proceedings of the KIEE Conference
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    • 1999.07c
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    • pp.1373-1375
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    • 1999
  • High impedance fault (HIF) is defined as fault the general overcurrent relay can not detect or interrupt. Especially when HIF occur in residential areas, energized high voltage conductor results in fire hazard, equiment damage or personal threat. This paper proposes the model of HIF in transmission line using the ZnO arrester and resistance to be implemented within EMTP. Wavelet transform is efficient and useful for the detection of HIF in power system, because it uses variable windows according to frequency. HIF detection method using wavelet transform can distinguish HIF from similar phenomena like arcfurance load, capacitor bank switching and line switching.

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A Directional Relay Algorithm Using Positive-Sequence Superimposed Quantity for Transmission Line Protection (정상 성분 변화량을 이용한 송전선로 보호용 방향 계전 알고리즘)

  • 이명수;유석구
    • The Transactions of the Korean Institute of Electrical Engineers A
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    • v.52 no.4
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    • pp.226-233
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    • 2003
  • Directional elements are fundamental to protection scheme security and selectivity, performing such critical tasks as supervising distance elements and controlling overcurrent elements. But, conventional operating principles for directional detection based on negative or zero sequence quantify do not satisfy the requirements for improved sensitivity and fast operation under any fault conditions. In this paper, new algorithm for directional elements is proposed. The proposed algorithm use the positive-sequence superimposed voltages and currents in order to be used in all fault conditions. Also, because this algorithm uses a voltage compensation method. it can be well operated under strong source conditions.

Simulation of Fault-Arc using EMTP (EMTP를 이용한 아크 사고의 모의)

  • Byun, S.H.;Choi, H.S.;Chae, J.B.;Kim, C.H.;Han, K.N.;Kim, I.D.;Kim, Y.H.
    • Proceedings of the KIEE Conference
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    • 1996.07b
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    • pp.850-852
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    • 1996
  • High impedance fault (HIF) is defined as fault that general overcurrent relay can't detect or interrupt, Especially when HIF occur under 15 kV, energized high voltage conductor results in fire hazard, equipment damage or personal threat. Because most HIF occur arc, HIF detection using arc is to increase. Numerical arc model can be applied in an electromagnetic transients program (EMTP) to reproduce the dynamic and random characteristic of arcs for any insulator arrangement, current and system voltage. It allows the representation of any network configuration to be investigated, so the digital simulation of arc faults through air can be substitute for demanding power arc test.

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The application of Overcurrent Ground Relay(OCGR) for High Impedance Fault Protection in Transmission Systems (송전계통 고저항지락사고 보호를 위한 지락과전류계전기 적용방안)

  • Lee, Seung-Jae;Lim, Jong-Yun;Lee, Jong-Bum;Kim, Chul-Hwan;Kim, Young-Han;Kim, Il-Dong;Han, Kwoung-Nam
    • Proceedings of the KIEE Conference
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    • 1996.11a
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    • pp.127-129
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    • 1996
  • 고저항지락사고시 선로의 지락후비보효용인 지락거리계전기 및 변압기 후비보호용 방향지락과 전류계전기의 비협조 문제로 인하여 광범위한 정전이 유발될수 있다. 본 논문에서는 이에 대한 대책으로 고저항지락보호용 과전류계전기의 도입과 적용방안에 대하여 제안한다.

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Discrimination of the Faulted Feeder in Grid with Distributed Generations Considering the Characteristics of Protection Devices (보호기기 특성을 고려한 분산전원 연계 계통의 사고 배전선 판별 알고리즘)

  • Kim, S.G.;Kim, K.H.;Jang, S.I.
    • Proceedings of the KIEE Conference
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    • 2004.11b
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    • pp.243-245
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    • 2004
  • This paper proposes the discrimination method for the fault location, whether it is within the line where the distributed generation(DG) is integrated or out of the line (but sharing the same bus of the substation). In general, DG has to be disconnected from the grid when the fault occurs on the interconnected distribution feeder as soon as possible. However, the faults occured on the neighboring feeder would mistakenly cause the disconnection of the DG. For reliable operation of DG, DG should be sustained at the fault occurred on neighboring distribution feeders. The proposed identification method utilizes the impedance monitored from the DG and examines the coordination of overcurrent relay of the distribution system. This paper describes how the proposed method to identify the faulted feeder and how the method can be utilized.

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Identification of the faulted Feeder it Distribution Networks with Distributed Generations (분산전원이 연계된 배전 계통의 고장 선로 구분)

  • Kim S. G.;Kim K. H.;Jang S. I.;Kang Y. C.
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.257-259
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    • 2004
  • This paper proposes the identification method for the faulted feeder, where it identify whether the faulted feeder is the DG-connected feeder or the neighboring feeder (but sharing the same bus of the substation). In general, DG has to be disconnected from the grid when the fault occurs on the interconnected distribution feeder as soon as possible. However, the faults occured on the neghboring feeder would mistakenly cause the disconnection of the DG. For reliable operation of DG, DG should be sustained at the fault occurred on neighboring distribution feeders. The proposed identification method utilizes the impedance monitored from the DG and examines the coordination of overcurrent relay of the distribution system. This paper describes how the proposed method to identify the faulted feeder and how the method can be utilized.

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An Adaptive Setting Method for the Overcurrent Relay of Distribution Feeders Considering the Interconnected Distributed Generations

  • Jang Sung-Il;Kim Kwang-Ho;Park Yong-Up;Choi Jung-Hwan;Kang Yong-Cheol;Kang Sang-Hee;Lee Seung-Jae;Oshida Hideharu;Park Jong-Keun
    • KIEE International Transactions on Power Engineering
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    • v.5A no.4
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    • pp.357-365
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    • 2005
  • This research investigates the influences of distributed generations (DG), which are interconnected to the bus by the dedicated lines, on the overcurrent relays (OCR) of the neighboring distribution feeders and also proposes a novel method to reduce the negative effects on the feeder protection. Due to the grid connected DG, the entire short-circuit capacity of the distribution networks increases, which may raise the current of the distribution feeder during normal operations as well as fault conditions. In particular, during the switching period for loop operation, the current level of the distribution feeder can be larger than the pickup value for the fault of the feeder's OCR, thereby causing the OCR to perform a mal-operation. This paper proposes the adaptive setting algorithm for the OCR of the distribution feeders having the neighboring dedicated feeders for the DG to prevent the mal-operations of the OCR under normal conditions. The proposed method changes the pickup value of the OCR by adapting the power output of the DG monitored at the relaying point in the distribution network. We tested the proposed method with the actual distribution network model of the Hoenggye substation at the Korea Electric Power Co., which is composed of five feeders supplying the power to network loads and two dedicated feeders for the wind turbine generators. The simulation results demonstrate that the proposed adaptive protection method could enhance the conventional OCR of the distribution feeders with the neighboring dedicated lines for the DG.

Development of an Adaptive Overcurrent Relaying Algorithm for Distribution Networks Embedding a Large Scaled Wind Farm

  • Jang, Sung-Il;Kim, Ji-Won;Kim, Kwang-Ho
    • KIEE International Transactions on Power Engineering
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    • v.3A no.4
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    • pp.198-205
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    • 2003
  • This paper proposes the adaptive relaying of protective devices applied in the neighboring distribution feeders for reliable and efficient operations of a wind farm interconnected with distribution networks by dedicated lines. A wind farm connected to an electric power network is one of the greatest alternative energy sources. However, the wind turbine generators are influenced by abnormal grid conditions such as disturbances occurring in the neighboring distribution feeders as well as the dedicated power. Particularly, in cases of a fault happening in the neighboring distribution feeders, a wind farm might be accelerated until protective devices clear the fault. Therefore, the delayed operation time of protective devices for satisfying the coordination might overly expose the interconnected wind turbine generators to the fault and cause damage to them. This paper describes the proper delayed operation time of protective relay satisfying the coordination of the distribution networks as well as reducing damage on the interconnected wind farm. The simulation results for the Hoenggye substation model composed of five feeders and one dedicated line using PSCAD/EMTDC showed that the proper delayed time of protective devices reflecting the fault condition and the power output of the wind farm could improve the operational reliability, efficiency, and stability of the wind farm.

A Study on Device Development for Electrical Fire Protection on Open Phase of Three-Phase Motor (3상 전동기 결상에 의한 전기화재 보호를 위한 장치 개발 연구)

  • Choi, Shin-Hyeong;Kwak, Dong-Kurl;Kim, Jin-Hwan
    • Fire Science and Engineering
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    • v.26 no.1
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    • pp.61-67
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    • 2012
  • In the three-phase power system using the three-phase motor, when any one-phase is open-phase, the unbalanced current flows and the single-phase power supplied by power supply produces overcurrent to motor coil. As a result, the enormous damage and electrical fire can be given to the power system. Recently, the thermal over-current relay (THR) or electronic motor protection relay (EMPR) is mostly used as the open-phase detection device of the three-phase motor. When the over-current or overheat of electric line is generated, it detects and operates circuit breaker, but there is the defect that the sensing speed is slow, the operation can be sometimes failed, and the precision is decreased. In order to improve these problems, this paper is proposed a new control circuit topology for openphase protection using semiconductor devices. Therefore, the proposed open-phase protection device (OPPD) enhances the sensing speed and precision, and has the advantage of simple fitting in the three-phase motor control panel in the field, as it manufactures into small size and light weight. As a result, the proposed OPPD protects the three-phase motor, minimizes the electrical fire from openphase, and contributes for the stable driving of the power system. The performance and confidence of the proposed OPPD is confirmed by a great variety of the experiments of operation characteristic.