• Title/Summary/Keyword: Transmission Line Protection

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Improvement of Line Protection Methods by Dynamic Analysis on a FACTS-compensated transmission line (FACTS 보상 송전선의 동적 해석을 통한 송전선 보호 방안 개선)

  • Lim Jung-Uk;Runolfsson Thodur
    • The Transactions of the Korean Institute of Electrical Engineers A
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    • v.54 no.12
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    • pp.573-579
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    • 2005
  • Dynamic analysis of a transmission line which is compensated by a FACTS device such as STATCOM, SSSC and UPFC is carried out in this paper and the impacts on conventional line protection methods such as the DCPM (Differential Current Protection Method) and the DPM (Distance Protection Method) are reviewed. A refined DCRM is proposed to detect faults properly regardless of the FACTS operation. The proposed method is applied to a FACTS-compensated line with a variety of faults and is verified by simulation results. An adaptive DPM on a FACTS-compensated line was proposed previously in the literature. In order to emphasize the necessity of the modified DPM, the conventional DPM is applied to a FACTS-compensated system. Significant factors such as fault types, fault locations, and fault resistances as well as FACTS device types are considered for relaying setting.

Setting Considerations of Distance Relay for Transmission Line with STATCOM

  • Zhang, Wen-Hao;Lee, Seung-Jae;Choi, Myeon-Song
    • Journal of Electrical Engineering and Technology
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    • v.5 no.4
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    • pp.522-529
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    • 2010
  • Distance relay plays an important role in the protection of transmission lines. The application of flexible AC transmission systems (FACTS) devices, such as the static synchronous compensator (STATCOM), could affect the performance of the distance relay because of compensation effect. This paper analyzes the application of distance relay on the protection of a transmission line containing STATCOM. New setting principles for different protection zones are proposed based on this analysis. A typical 500 kV transmission system employing STATCOM is modeled using Matlab/Simulink. The impact of STATCOM on distance protection scheme is studied for different fault types, fault locations, and system configurations. Based on simulation results, the performance of distance relay is evaluated. The setting principle can be verified for the transmission line with STATCOM.

Graphical Modeling for Operational Scheme of Current Differential Relay for Transmission Line Protection (송전선 보호용 차동전류 계전기의 동작원리에 대한 그래픽 표현)

  • Lee, Jong-Beom
    • Proceedings of the KIEE Conference
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    • 1999.07c
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    • pp.1407-1409
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    • 1999
  • Distance relay is being used for transmission line protection. Recently, current differential relay is used with high reliability in power system. This kind of relay is reported that it has a reliable detection ability, even so high impedance faults take place in transmission line. Therefore it is expected to use and expand widely in many utilities. Tripping of the relay is decided according to the difference between differential and restraint current. However the tripping criterion can be changed by the manufacturers. This paper presents an operational scheme of current differential relay for transmission line protection with graphical model. It is developed for educational purpose for students interesting in power system and protection engineer in utility. MATLAB is used to establish the models.

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Dynamic-state Model[1] Transmission Line Protective Relay Using PSCAD/EMTDC (PSCAD/EMTDC를 이용한 송전선로 보호 계전기의 동특성 모델[1])

  • Lee, H.H.;Kim, C.H.;Cho, K.B.;Chang, B.T.;Lee, J.W.;Ahn, S.P.;Lee, J.K.
    • Proceedings of the KIEE Conference
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    • 2003.07a
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    • pp.348-350
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    • 2003
  • In recent years, with the continuous development of modem power system, the need for high performance protection to meet the customers' requests for more stable and reliable power supply has become increasingly emphasized. So, there is urgent need for a proper testing platform about not only existing digital protection relay but also new digital protection relay on the transmission line. It is also dynamic-state test which can test the performance of digital relay. This paper suggests basic system model for testing transmission line protection using PSCAD/EMTDC, and presents the process of the component modeling in the basic system.

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The Study for Analysis and Prevention Measure of Overhead Transmission Line Fault with Birds (조류에 의한 가공송전선로의 고장분석 및 예방대책 고찰)

  • Jung, Si-Hwan;Kang, Cheul-Won;Kim, Wan-Sik
    • Proceedings of the KIEE Conference
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    • 2006.11a
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    • pp.96-98
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    • 2006
  • Recently major power outages are increased, because of transmission line fault by birds. Therefore, after finding out the problem of the current prevention measure for the super high voltage transmission Line in Korea and analyzing the protection measure of other foreign power companies for the transmission facilities fault by birds, this paper describes an effective device for power line fault protection by birds which has no legal problem and also protects birds. The described prevention measure of power outage by birds in this paper, has a special feature that is able to be installed on the current overhead transmission facilities without a replacement or change.

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Special Protection and Control Scheme for Transmission Line Overloading Elimination Based on Hybrid Differential Evolution/Electromagnetism-Like Algorithm

  • Hadi, Mahmood Khalid;Othman, Mohammad Lutfi;Wahab, Noor Izzri Abd
    • Journal of Electrical Engineering and Technology
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    • v.12 no.5
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    • pp.1729-1742
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    • 2017
  • In designing System Protection Schemes (SPSs) in power systems, protecting transmission network against extreme undesired conditions becomes a significant challenge in mitigating the transmission line overloading. This paper presents an intelligent Special Protection and Control Scheme (SPCS) using of Differential Evolution with Adaptive Mutation (DEAM) approach to obtain the optimum generation rescheduling to solve the transmission line overloading problem in system contingency conditions. DEAM algorithm employs the attraction-repulsion idea that is applied in the electromagnetism-like algorithm to support the mutation process of the conventional Differential Evolution (DE) algorithm. Different N-1 contingency conditions under base and increase load demand are considered in this paper. Simulation results have been compared with those acquired from Genetic Algorithm (GA) application. Minimum severity index has been considered as the objective function. The final results show that the presented DEAM method offers better performance than GA in terms of faster convergence and less generation fuel cost. IEEE 30-bus test system has been used to prove the effectiveness and robustness of the proposed algorithm.

Electrical Characteristics Evaluation of Transmission Line Arresters (송전선로용 피뢰기의 전기적 특성 평가)

  • Kim, Seok-Sou;Heo, Jong-Cheol;Mun, In-Wook;Oh, Chang-Su
    • Proceedings of the KIEE Conference
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    • 2006.07c
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    • pp.1498-1499
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    • 2006
  • It has been reported that more than 50% of breakdown in transmission line for 154kV and above is due to lightning stroke. The flashover failure due to lightning stroke causes outage, voltage drop and instantaneous outage, Therefore line arrestors have been used in transmission line for protection from lightning stroke. In this paper, we describes electrical characteristics and performance test of line arrestor for transmission line.

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Data Transmission over Power Line with Lightning Protection Devices

  • Kim, Sungeon;Jeon, Taehyun
    • International journal of advanced smart convergence
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    • v.2 no.1
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    • pp.27-29
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    • 2013
  • This paper discusses comparative analysis of the effects of surge protection devices (SPD) upon the power line communication channels. The quality of the data transmission channel is measured based on the data rate for the various channel parameters which include channel length and application method of the lightning protection device. The performance measurements are also carried out for various lengths of the communication channel. Experiment results show that specific combination of SPDs applied in the network causes severe degradation of the channel quality which is associated with the combination of grade levels and channel lengths.

A Method for Enhancing Data Transmission Performance in the Power-Line Communication Channel with Low-Voltage Surge Protective Devices (저압용 SPD가 설치된 전력선통신에서 데이터전송 성능 향상)

  • Choi, Jong-Min;Jeon, Tae-Hyun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.26 no.2
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    • pp.78-85
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    • 2012
  • Low-Voltage power lines should equip surge protection devices which protect electronic equipments and human lives against lightning and abnormal voltages. Data transmission capacity of the power line is determined by frequency characteristics of the surge protective devices. To analyze the effects of surge protective devices on the data transmission performance, various combinations of installation methods are tested which include ZnO varistor elements that is compatible with class I, class II and class III. The result claims that ZnO varistor for class III is found to be one of the main factors that deteriorates the transmission performance. To overcome this problem a serial connection methed between Gap type SPD and ZnO varistor is proposed. With the proposed scheme, laboratory experimental results show that the data transmission performance can be improved up to 91.9[%] with proper SPD combination.

Analysis of Protection Circuits of Overcurent and Overvoltage on Transmission Line Induced by External Electromagnetic Pulse (외부 전자파 펄스에 의해 전송선로에 유기되는 과전류 및 과전압 보호회로의 해석)

  • 하헌태;김세윤;이경재;오명환
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.28A no.1
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    • pp.8-14
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    • 1991
  • A new algorithm for calculation of overcurrent and overvoltage at load for parallel two-wire transmission line with nonlinear protection circuits induced by and external electromagnetic pulse is suggested. The rigorous solution is obtained for a particular type of the incident waveform and protection circuit. The validity of our algorithm is checked by comparing numerical results to the analytic solution in the particular case.

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