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PC BASED COMPREHENSIVE RELAYING SCHEME FOR GENERATOR-TRANSFORMER UNIT

机译:基于PC的发电机-变压器组综合继电器方案。

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This paper reports the development of a comprehensive protective relaying scheme for generator-transformer unit using digital filters. An efficient algorithm based on the recursive constraint transfer function model of the IIR band pass filter has been developed which extracts the various frequency components such as 50, 100, and 150 Hz for realizing the protective functions such as variable bias differential logic, and earth fault protection logic for the combined unit, differential protection logic, rotor over heating relaying logic, reverse power flow relaying logic, rotor earth fault protection logic and field failure relaying logic for the generator, differential protection logic for unit transformer and over fluxing protection logic for the main transformer. In addition to the above relaying functions, the proposed scheme also incorporates a voltage controlled over current relay with IDMT characteristics to give back up for the short-circuit protection for the combined unit. The proposed scheme was tested for different simulated conditions representing normal and abnormal conditions of the system using a PC-80386 computer system. The set limit for discriminating between internal fault and normal condition is considered in terms of the average value rather than RMS value of the three frequency components resulting in reduction of the arithmetical complexity and computational efforts. The proposed scheme as a whole operated satisfactorily by issuing trip signals during internal fault conditions and restraining from tripping during the external fault and normal conditions.
机译:本文报告了使用数字滤波器的发电机-变压器单元综合保护继电方案的开发情况。开发了一种基于IIR带通滤波器的递归约束传递函数模型的有效算法,该算法提取诸如50、100和150 Hz的各种频率分量,以实现诸如可变偏置差分逻辑和接地故障之类的保护功能组合单元的保护逻辑,差动保护逻辑,转子过热继电逻辑,反向潮流继电器逻辑,发电机的转子接地故障保护逻辑和现场故障继电逻辑,单元变压器的差动保护逻辑和发电机的过磁保护逻辑主变压器。除了上述继电器功能外,所提出的方案还结合了具有IDMT特性的电压控制的过电流继电器,以补偿组合单元的短路保护。使用PC-80386计算机系统,针对表示系统正常和异常状况的不同模拟状况对提出的方案进行了测试。根据三个频率分量的平均值而不是RMS值来考虑用于区分内部故障和正常状态的设定极限,从而降低了算术复杂性和计算量。通过在内部故障情况下发出跳闸信号并抑制在外部故障和正常情况下跳闸,该方案总体上令人满意地工作。

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