• Title/Summary/Keyword: Protective current transformer

Search Result 67, Processing Time 0.033 seconds

Analysis on SFCL's Impedance for Protective Coordination in Large Transformer installed in Distribution Substation (배전변전소에 대용량변압기로 교체 적용시 보호협조를 위한 초전도 전류제한기의 임피던스 분석)

  • Kim, Jin-Seok;Kim, Myoung-Hoo;You, Il-Kyoung;Moon, Jong-Fil;Lim, Sung-Hun;Kim, Jae-Chul;Ahn, Jae-Min
    • The Transactions of The Korean Institute of Electrical Engineers
    • /
    • v.58 no.8
    • /
    • pp.1479-1484
    • /
    • 2009
  • The introduction of the large transformer due to the large power demand has increased the fault current in power distribution system. The increased fault current can exceed the cut-off ratings of the circuit breaker. As the methods to solve this problem, the superconducting fault current limiter(SFCL) has been notified. However, the limited fault current by SFCL affects the operational characteristics of the protective device such as overcurrent relay. Therefore, the selection of the proper impedance for the SFCL is required to keep overcurrent relay's protective coordination with the SFCL when a large transformer is introduced into the distribution system. In this paper, the SFCL's impedance for protective coordination was investigates in that a large transformer is introduced.

A Study on the Determination of the Transient Performance for Protective Current Transformer (보호용 CT의 과도 성능 검증에 관한 연구)

  • Kim, Dong-Su;Park, Nam-Ok;Kim, Chul-Hwan;Ryu, Jae-Nam
    • The Transactions of The Korean Institute of Electrical Engineers
    • /
    • v.59 no.10
    • /
    • pp.1727-1732
    • /
    • 2010
  • The Current transformer is classified measuring CT and protective CT for their purpose. The measuring CT is required to retain a specified accuracy over the normal range of load currents, but the protective CT must be capable of providing an adequate output over wide range of fault condition. Therefore, the protective CT must determine the transient performance during fault condition. This paper measured peak instantaneous error of the TPY class CT to determine the transient performance directly and indirectly and studied the test results.

Graphical Presentation on Operation Principle of Protective Relay According to Winding Type and Vector Group in Transformer (전력용 변압기에서 권선방식과 벡터그룹에 따른 보호계전기 동작원리의 그래픽 표현)

  • Lee, Jong-Beom
    • Proceedings of the KIEE Conference
    • /
    • 1999.07c
    • /
    • pp.1410-1412
    • /
    • 1999
  • Protective relay for transformer operates in general by comparing with the differential current and the restraint current. These kinds of currents are changed on magnitude and phasor during the fault according to winding type and vector group. This paper presents the differential and restraint currents and operational principle of differential protective relay for two-winding and three-winding transformer with graphical model. It is developed using MATLAB for an educational purpose on engineer related in power system and protection in university and power utility including large factory.

  • PDF

Transformer Protective Relaying Algorithm Using Neuro-Fuzzy based on Wavelet Transform (웨이브렛 변환기반 뉴로-퍼지를 이용한 변압기 보호계전 알고리즘)

  • Lee Myoung Rhun;Lee Jong Beom;Hong Dong suk
    • Proceedings of the KIEE Conference
    • /
    • summer
    • /
    • pp.607-609
    • /
    • 2004
  • A breakdown occurred in power transformer causes interruption of power transmission. Protective relay should be installed in transformer to detect such a fault. Protective relaying algorithm for transformer must be included a function to discriminate between winding fault and inrushing state. Recently, current differential relay is widely used to protect power transformer. However if inrush occurs in transformer, relay can be tripped by judging as internal fault. New algorithms are required in order to such problem. This study proposes a new protective relaying algorithm using Neuro-Fuzzy inference and wavelet. A variety of transformer transient states are simulated by BCTRAN and HYSDT in EMTP. D1 coefficients of differential current are obtained by wavelet transform. D1 coefficients and RMS of 3-phase primary voltage are used to make a target data and are trained by Nwo-Fuzzy algorithm which distinguishes correctly whether internal fault occurs or not within 1/2 after fault detection. It is evaluated that the results obtained by simulations can effectively protect a transformer by contact discriminating between winding fault and inrushing state.

  • PDF

Analysis on Voltage Sag in Power Distribution System according to SFCL's Impedance for Protective Coordination with Large Transformer (배전계통에 대용량변압기 교체 적용시 초전도 한류기의 임피던스에 따른 순간전압 분석)

  • Kim, Jin-Seok;Moon, Jong-Fil
    • The Transactions of the Korean Institute of Electrical Engineers P
    • /
    • v.63 no.4
    • /
    • pp.312-316
    • /
    • 2014
  • In this paper, a voltage sag is analyzed in case of superconducting fault current limiter (SFCL) installed in power distribution system where replaces the main power transformer to large one to meet the power demand. First, the power system is configurated to analyze the operation characteristics of the protective relay with replacement of the main transformer and application of the SFCL. Next, the method to meet the protection coordination is analyzed with large transformer using PSCAD/EMTDC. Finally, the bus voltage is investigated according to the impedance of both main transformer and SFCL in case that the SFCL is applied into feeder.

A Study on The Development and Function Test of Digital Transformer Protection Relay Using The Induced Voltage (유기전압비를 이용한 디지털형 변압기 보호계전기 개발 및 성능시험에 관한 연구)

  • Jung, Sung-Kyo;Lee, Jae-Kyung;Kim, Han-Do;Choi, Dae-Gil;Kang, Yong-Chul;Kang, Sang-Hee
    • Proceedings of the KIEE Conference
    • /
    • 2001.11b
    • /
    • pp.216-218
    • /
    • 2001
  • The transformer role is very important in power system operation and control; also its price is very expensive. Therefore many kinds of the efforts for transformer protection have been executed. So for as, current differential relay(87) has been mainly used for transformer protection. But current differential relaying method has several troubles as followings. Differential current can be occurred by transformers inrush current between winding1 and winding2 of transformer when transformer is initially energized. Also harmonic restrained element used in current differential relaying method is one of the causes of relays mal-operation because recently harmonics in power system gradually increase by power switching devices(SVC, FACTS, DSC, etc). Therefore many kinds of effort have been executed to solve the trouble of current differential relay and one of them is method using ratio of increment of flux linkages(RIFL) of the primary and secondary windings. This paper introduces a novel protective relay for power transformers using RIFL of the primary and secondary windings. Novel protective relay successfully discriminates between transformer internal faults and normal operation conditions including inrush and this paper includes real time test results using RTDS(Real Time Digital Simulator) for novel protective relay. A novel protective relay was designed using the TMS320C32 digital signal processor and consisted of DSP module. A/D converter module, DI/DO module, MMI interface module and LCD display module and developed by Xelpower co., Ltd.

  • PDF

Advanced Protective Relaying Algorithm by Flux-Differential Current Slope Characteristic for Power Transformer (전력용 변압기용 자속-차전류 기울기 특성에 의한 개선된 보호계전 알고리즘)

  • 박철원;신명철
    • The Transactions of the Korean Institute of Electrical Engineers A
    • /
    • v.53 no.7
    • /
    • pp.382-388
    • /
    • 2004
  • The most widely used primary protection for the internal fault detection of power transformers is current percentage differential relaying(PDR). However, the harmonic components could be decreased by magnetizing inrush when there have been changes to the material of iron core or its design methodology. The higher the capacitance of high voltage status and underground distribution, the more differential current includes the second harmonic component during occurrence of an internal fault. Therefore, the conventional harmonic restraint methods need modification. This paper proposes an advanced protective relaying algorithm by fluxt-differential current slope characteristic and trend of voltage and differential current. To evaluate the performance of proposed algorithm, we have made comparative studies of PDR fuzzy relaying, and DWT relaying. The paper is constructed power system model including power transformer, utilizing the WatATP99, and data collection is made through simulation of various internal faults and inrush. As the results of test. the new proposed algorithm was proven to be faster and more reliable.

Protective Relaying Algorithm for Transformer Using Wavelet Transform (웨이블렛 변환을 이용한 변압기 보호계전 알고리즘)

  • 홍동석;이종범
    • The Transactions of the Korean Institute of Electrical Engineers A
    • /
    • v.52 no.2
    • /
    • pp.134-141
    • /
    • 2003
  • The power transformer is one of the very important electric facilities in power systems. Recently, current differential relay is widely used to protect such power transformer But if inrush occurs in transformer, relay can be tripped by judging like internal fault. Therefore the correct discrimination between internal winding fault, inrush and overexcitation should be performed. This paper presents a new protective relaying algorithm which discriminates inrush, internal faults and overexcitation of transformer modelled using BCTRAN and HYSDAT of EMTP. Discrimination between internal winding fault and inrush is revealed in simulation within 1/2 cycle after fault. Accordingly, it is evaluated that the proposed algorithm has better discrimination characteristics in various cases thin the current relaying for protection of transformer.

The Development of Protective Relaying Algorithm for Transformer Based on Wavelet Transform (웨이블렛 변환을 이용한 변압기 보호계전 알고리즘 개발)

  • Hong, Dong-Suk;Jung, Che-Kyun;Lee, Jong-Beom
    • Proceedings of the KIEE Conference
    • /
    • 2001.07a
    • /
    • pp.485-487
    • /
    • 2001
  • Current differential protective relaying with harmonic restraint module is, in general, used to protect transformer. But It is hard to distinguish inrush and internal winding fault with differential current protective relaying. This paper presents the new protective algorithm for transformers using 3-phase differential current's d1 coefficient values in wavelet transform. Various states of transformer was simulated using EMTP. Internal winding fault and inrush are classified within shorter time using the proposed algorithm.

  • PDF

A Study on the Protective Relay Setting Rule for the Circulation Current Caused by ULTC Tap Mismatch between 765㎸ Transformer Banks (ULTC 탭차에 의한 765㎸용 변압기 탱크간 순환전류 해석에 의한 보호계전기 정정지침에 관한 연구)

  • 최면송;배영준
    • The Transactions of the Korean Institute of Electrical Engineers A
    • /
    • v.53 no.4
    • /
    • pp.199-207
    • /
    • 2004
  • The 765(㎸) transformer is operated using two parallel tanks because of its high capacity. The protective relay (61) for the current phase balance of a 765(㎸) transformer would misoperate by excessively, circulation current of each tanks caused by a mismatch of ULTC Tap. In this paper, the phenomenon was analyzed, and the setting rules of relay for bank protection are studied. The result of analysis is verified by the simulation of 765(㎸) transformer with the Power Systems Computer Aided Design(PSCAD). Thereby an appropriate setting rule of the current phase balance relay is recommended.