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A scheme for controlled islanding to prevent subsequent blackoutud

机译:用于防止后续停电的受控孤岛方案

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摘要

The power systems operated by the utilities in developing countries suffer from a large gap between demand and generation, inadequate transmission capacity, and nonuniform location of the load centers and generating stations. Occurrences of faults in such systems, in most of the cases, end up with the worst consequences (i.e., complete blackout). This paper illustrates the way a blackout can be prevented in real time through controlled segregation of a system into a number of viable islands together with generation and/or load shedding. The nature and location of any fault that warrants such islanding can be ascertained in real time through monitoring the active-power (megawatt) flows at both ends of a number of prespecified lines. The blackout of June 20, 1998 in the Bangladesh Power Development Board system has been used as an example in the illustration. The philosophy of the proposed islanding scheme may be considered for implementation in other power systems also.
机译:发展中国家的公用事业公司运营的电力系统面临着需求与发电之间的巨大缺口,输电能力不足以及负荷中心和发电站位置不均匀的问题。在大多数情况下,此类系统中发生故障会导致最严重的后果(即完全停电)。本文说明了通过控制系统隔离到多个可行的孤岛以及发电和/或减载,可以实时防止停电的方法。可以通过监视多个预定线路两端的有功功率(兆瓦)流量来实时确定任何需要进行孤岛故障的性质和位置。图示中以1998年6月20日孟加拉国电力开发委员会系统的停电为例。提议的孤岛方案的原理也可以考虑在其他电力系统中实施。

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