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An adaptive directional current protection scheme for distribution network with DG integration based on fault steady-state component

机译:基于故障稳态分量的分布式配电网自适应方向电流保护方案

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摘要

In view of the low reliability of traditional protection in the distribution network caused by the massive integration of DGs (distributed generation), an adaptive directional current protection scheme based on fault steady-state component is proposed in this paper. First, by analyzing the fault transient characteristics and fault equalization methods of different types of DGs, the components of system short circuit current are calculated, and the relationship between three phase components of the short circuit current is revealed. On this basis, according to the fault boundary conditions, the fault steady-state components are obtained. And then, combined with the measured voltage and measured current at the relaying point, the equivalent voltage and equivalent impedance at the backside of protection are calculated. Thus the adaptive directional current protection criteria for different fault types are formed. Simulation results demonstrate that, the proposed scheme is not affected by the type and power output of DG and the system operation mode, and could effectively prevent the protection from refusing to operate due to voltage drop.
机译:针对分布式电网大规模集成(分布式发电)导致配电网传统保护可靠性低的问题,提出了一种基于故障稳态分量的自适应定向电流保护方案。首先,通过分析不同类型DG的故障暂态特性和故障均衡方法,计算出系统短路电流的分量,揭示了短路电流的三相分量之间的关系。在此基础上,根据故障边界条件,获得故障稳态分量。然后,结合在继电器点处测得的电压和电流,计算出保护背面的等效电压和等效阻抗。这样就形成了针对不同故障类型的自适应定向电流保护准则。仿真结果表明,该方案不受DG的类型,功率输出和系统工作模式的影响,可以有效地防止保护装置因电压降而拒绝工作。

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