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Improvisation on standard limit of the critical clearing time specified for the protection relays using one machine infinite bus equivalent

机译:使用一台机器无限公共汽车等同于保护继电器指定的关键清算时间标准限制的简约

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This paper presents a computationally accurate technique used to determine the critical clearing time using the one machine infinite bus equivalent system based on the equal area criterion. The critical clearing time is the maximum time interval by which the fault must be cleared in order to preserve the system stability. The computation of critical clearing time involves an intrinsic mathematical formulation derived from the pre-fault, during fault and post-fault conditions. The value of critical clearing time becomes significantly less when transient instability is induced by a three phase fault occurred at the bus bar closest to the substation connected with a sensitive generator. By setting the protection relay with the obtained value of critical clearing time, it is adequate to sustain the transient stability even though fault happened at the other locations. During the occurrence of fault, a circuit breaker which is operating earlier than the smallest critical clearing time will not agitate to a transient instability. The IEEE Reliability Test System 1979 (RTS-79) is used to verify the robustness of the methodology in a determining the critical clearing time.
机译:本文提出了一种基于等区域标准的一台机器无限总线等效系统来确定临界清算时间的计算准确的技术。关键清算时间是必须清除故障以保持系统稳定性的最大时间间隔。关键清算时间的计算涉及在故障和故障后条件期间导出的内在数学制构。当在最靠近与敏感发生器连接的汇流条上发生的三相故障引起瞬态不稳定性时,临界清除时间的值显着较低。通过将保护继电器设定为具有所得的关键清算时间的值,即使在其他位置发生故障也足以维持瞬态稳定性。在发生故障的情况下,比最小的关键清算时间更早操作的断路器不会搅拌到瞬态不稳定性。 IEEE可靠性测试系统1979(RTS-79)用于验证方法中的方法的鲁棒性,确定临界清算时间。

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