• 제목/요약/키워드: Parallel transformer

검색결과 224건 처리시간 0.021초

무부하 충전케이블 개방시 잔류전압에의한 과전압계전기 동작현상 연구 (A Study of Over Voltage Ground Relay Operation Status at Opening of No-load Charged Cable)

  • 김영한;최종혁;윤기섭
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2000년도 하계학술대회 논문집 A
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    • pp.185-187
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    • 2000
  • Fault current is flowed into 154/23kV M. Tr when line-to-ground fault occurs in power system. NGR(Neutral Grounded Reactor) is set up in order to prevent M.Tr fault by limiting magnitude of fault currents. Here, disconnection of NGR causes voltage increase by L-C resonance and line-to-ground fault in an unearthed system results in voltage increase at healthy phases. So Over Voltage Ground Relay(OVGR) is used for tripping M.Tr. Also, buses at second phases of M.Trs are all connected with section circuit breakers closed for the purpose of parallel operation and load shedding. In case of speciality buses are comprised of power cable in part for GIS connection. When no-load charged cable or bus is open by a section CB, unbalanced voltage charged on the bus is induced. Also discrepant opening time for circuit breakers on different phases gives rise to unbalanced zero sequence voltage. It was observed that this zero sequence voltage detected in the 22.9kV P.T (Potential Transformer for bus) mal-operated 59GT and tripped M.Tr. The zero sequence voltage of which vanishing time is longer than relay operating time came out by EMTDC simulation. Also, it was shown that the voltage waves of actual test are similar to those of simulation. On the basis of above results, R-C circuit complement on the relay without any effect on a power system made operating time of the relay longer than vanishing time of distorted waves. Consequently, operating time of the relay was delayed and magnitude of distorted waves was decreased by increasing time constant of the relay.

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임피던스 계전기를 이용한 발전기 비동기 투입 보호 연구 (A Study on Protection of Generator Asynchronization by Impedance Relaying)

  • 이종훤
    • 전기학회논문지
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    • 제60권11호
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    • pp.2000-2006
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    • 2011
  • Asynchronous phenomenon occurs on the synchronous generators under power system when a generator's amplitude of electromagnetic force, phase angle, frequency and waveform etc become different from those of other synchronous generators which can follow instantly varying speed of turbine. Because the amplitude of electromagnetic force, phase frequency and waveform differ from those of other generators with which are to be put into parallel operation due to the change of excitation condition for load sharing and the sharing load change, if reactive current in the internal circuit circulates among generators, the efficiency varies and the stator winding of generators are overheated by resistance loss. Where calculation method of protection settings and Logic for Protection of Generator Asynchronization will be recommended, A distance relay scheme is commonly used for backup protection. This scheme, called a step distance protection, is comprised of 3 steps for graded zones having different operating time. As for the conventional step distance protection scheme, Zone 2 can exceed the ordinary coverage excessively in case of a transformer protection relay especially. In this case, there can be overlapped protection area from a backup protection relay and, therefore, malfunctions can occur when any fault occurs in the overlapped protection area. Distance relays and overcurrent relays are used for backup protection generally, and both relays have normally this problem, the maloperation, caused by a fault in the overlapped protection area. Corresponding to an IEEE standard, this problem can be solved with the modification of the operating time. On the other hand, in Korea, zones are modified to cope with this problem in some specific conditions. These two methods may not be obvious to handle this problem correctly because these methods, modifying the common rules, can cause another coordination problem. To overcome asynchronizing protection this paper describes an improved backup protection coordination scheme using a new Logic that will be suggested.

낮은 변압기 턴비를 갖는 고승압.대전력용 3상 ZVS DC-DC컨버터 (Three-Phase ZVS DC-DC Converter with Low Transformer Turn Ratio for High Step-up and High Power Applications)

  • 김준근;박찬수;최세완;박가우
    • 전력전자학회논문지
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    • 제16권3호
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    • pp.242-249
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    • 2011
  • 제안하는 컨버터는 부스트 하프브리지-전압 더블러를 각각 병렬-직렬로 연결하여 출력전력 및 출력전압을 증대시키므로 고승압 대전력 응용에서 소자의 선정이 용이하다. 특히 고주파변압기 턴 비를 작게 할 수 있고 DC 오프셋이 제거되어 최적의 변압기 설계가 가능하며, 3개의 코아로 전력이 분배되어 Low Profile 및 열 분산에 유리하다. 제안하는 컨버터는 전 영역(0 ∼ 1)의 듀티 사용으로 스타트업 및 추가의 클램프회로가 필요 없으며 입력전압 변동이 큰 응용에 적합하다. 또한 넓은 듀티영역에서 스위치의 ZVS 턴온과 다이오드의 ZCS 턴온 턴오프가 성취되므로 고효율을 달성할 수 있다. 제안하는 컨버터를 5 kW급 시작품으로 검증하였다.

태양광전원이 연계된 고압배전선로의 보호협조 평가 방안에 관한 연구 (Evaluation Method for Protection Coordination of PV Systems Interconnected with Primary Feeders)

  • 김병기;김소희;유경상;노대석
    • 한국융합학회논문지
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    • 제2권4호
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    • pp.29-37
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    • 2011
  • 종래의 배전계통에 있어서의 전력조류는 변전소에서 선로말단을 향한 단 방향이었지만, 신에너지전원(분산전원)이 연계된 배전계통의 경우에는 그 출력용량의 여부에 따라 양방향의 전력조류가 발생할 가능성이 있어, 계통운용상 여러 가지의 문제점이 야기될 수 있다. 분산전원은 대규모전원의 보완적 역할과 배전선로 상의 국부적 부하 감당 역할을 부과하여 그의 적극적 활용을 꾀하기 위해서는, 분산전원으로부터 배전계통에 전력을 공급하는 역 조류의 기능을 허용할 수 있는 양방향 보호협조방식의 체제를 확립할 필요가 있다. 따라서 본 연구에서는 분산전원 연계에 따른 보호협조 기본 방안과 부하절체 운전에 따른 보호협조 방안, 변압기결선에 따른 보호협조 방안 등에 대한 알고리즘을 제시하였다. 또한, 이론적인 계산법(대칭좌표법)과 MATLAB/SIMULINK에 의하여 실 계통에서의 양방향 보호협조에 관련된 문제점을 분석하고, 해결방안을 제시하였다.