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Smart trip logic for Smart Grids to block distance relay maloperation — Implementation and validation

机译:智能电网的智能跳闸逻辑可阻止距离继电器误操作—实施和验证

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Zone 1 reach setting of a distance relay depend upon many factors, such as, dc offset in current signals, loading effect, fault resistance in the presence of in-feed from remote end and also capacitive voltage transformer (CVT) transients. All these factors are taken care of except for CVT transients, which is dealt either by reducing zone 1 reach or by providing a fixed time delay in today's intelligent electronic devices (IED). This paper proposes a new and simple logic to prevent numerical distance relay mal-operation by zone 1 element due to CVT transients without sacrificing zone 1 reach. This is achieved by providing adaptive time delay by actually monitoring the CVT transients in time domain. The proposed logic is validated in real time by incorporating the proposed logic along with positive sequence polarized distance relay model in field programmable gate array (FPGA).
机译:距离继电器的1区到达设置取决于许多因素,例如电流信号中的直流偏移,负载效应,存在远端馈电时的故障电阻以及电容式电压互感器(CVT)瞬变。除CVT瞬变外,所有这些因素都得到了解决,这可以通过减小区域1的到达范围或通过在当今的智能电子设备(IED)中提供固定的时间延迟来解决。本文提出了一种新的简单逻辑,可以防止在不牺牲1区到达范围的情况下,由于CVT瞬变而导致1区元件发生数值距离继电器误操作的情况。这是通过在时域中实际监视CVT瞬变来提供自适应时间延迟来实现的。通过将提出的逻辑与正序极化距离继电器模型合并到现场可编程门阵列(FPGA)中,可以实时验证提出的逻辑。

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