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자료유형
학술저널
저자정보
이종훤 (한전전력연구원)
저널정보
대한전기학회 전기학회논문지 전기학회논문지 제61권 제10호
발행연도
2012.10
수록면
1,542 - 1,547 (6page)

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이 논문의 연구 히스토리 (3)

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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. When 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.

목차

Abstract
1. 서론
2. 발전기 동기 투입
3. 전압의 주기 및 전압차를 이용한 비동기 투입 저지 알고리즘 개발
4. 결론
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UCI(KEPA) : I410-ECN-0101-2014-560-001368745