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Study on line protection of distribution network with DFIG based on current decay factor

机译:基于电流衰减因子的DFIG分配网络线路保护研究

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Because of the high permeability integration of the dispersed wind power to the distribution network, the fault current direction, amplitude and phase angle have significant changes, and it is difficult for the traditional three-current protection to adapt these changes. The transient characteristics of the wind turbine are not the same as the system power, leading to the protection scheme can't adapt to such characteristics. By theoretical derivation the transient characteristics of the doubly-fed induction wind generator (DFIG), the decay characteristics of DFIG is got in this paper. According to the analysis, a line protection scheme based on the current decay factor difference is proposed. The fault region is identified by the difference of the current decay factor between the two ends of the fault line. Referring to the parameters of the first exemplary project in which the dispersed wind power is integrated into the 10kV local power grid. The active distribution network simulation model is built in PSCAD/EMTDC, the simulation results show that the proposed scheme can operate correctly with different fault type, fault position and wind field output, and it can adapt to various operating conditions sensitively and effectively.
机译:由于分散的风电向分配网络的高渗透性集成,故障电流方向,幅度和相位角具有显着的变化,并且难以使传统的三电流保护来适应这些变化。风力涡轮机的瞬态特性与系统功率不同,导致保护方案不能适应这些特性。通过理论推导,双馈感应风力发生器(DFIG)的瞬态特性,本文获取了DFIG的衰减特性。根据分析,提出了一种基于电流衰减因子差的线保护方案。故障区域通过故障线的两端之间的电流衰减因子的差异来识别。参考第一示例性项目的参数,其中分散的风力集成到10kV局部电网中。主动分配网络仿真模型内置于PSCAD / EMTDC中,仿真结果表明,该方案可以采用不同的故障类型,故障位置和风力场输出正确运行,可以敏感地适应各种操作条件。

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