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High Frequency Impedance Based Fast Directional Pilot Protection Scheme for Distribution Network With Wind DGs

机译:风力发电配电网基于高频阻抗的快速定向先导保护方案

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With the ever-increasing integration of wind power into the distribution network in the form of distributed generations (DGs), the fault direction judgment is an important question for such a network with multiple branches. Due to the phase-angle controlled characteristics of the fault current supplied by wind DGs, the optimal application environment for the traditional directional elements no longer exists. To deal with this issue, a high frequency impedance based fast directional pilot protection scheme is proposed in this paper. Firstly, the high frequency impedance model of a wind DG is established according to the time sequential characteristics of its response to faults. Secondly, the fault direction identification criteria are described based on the high frequency-domain fault additional network. On the one hand, the proposed scheme is not influenced by the different control strategies of the wind DGs. On the other hand, the proposed scheme does not rely on a strict synchronized communication system. The simulation results prove the feasibility of the proposed scheme.
机译:随着以分布式发电(DG)形式将风电集成到配电网络中的不断增加,对于这种具有多个分支机构的网络,故障方向判断是一个重要的问题。由于风力发电设备提供的故障电流的相位角控制特性,传统方向性元件的最佳应用环境已不复存在。针对这一问题,本文提出了一种基于高频阻抗的快速定向导频保护方案。首先,根据风电DG对故障的响应的时间顺序特征,建立其高频阻抗模型。其次,基于高频域故障附加网络,描述了故障方向识别准则。一方面,所提出的方案不受风力DG的不同控制策略的影响。另一方面,提出的方案不依赖严格的同步通信系统。仿真结果证明了该方案的可行性。

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