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An Adaptive Current Protection for Distributed Network with Wind Generators

机译:具有风力发电机的分布式网络的自适应电流保护

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With the integration of wind generators in the distributed network, the power flow and fault current characteristic have been changed. The negative sequence impedance of the doubly fed induction generator (DFIG) is quite different from the positive sequence impedance after the crowbar circuit is activated. This characteristic poses a big challenge on the operation of the protection system. Traditional setting principle for the current protection is based on the assumption that the positive and negative sequence impedances of sources are the same, which is not satisfied any more. The influence of this unique characteristic on the short-circuit current under different fault types and fault positions is analyzed and a correction factor is introduced to modify the setting values of the instantaneous overcurrent protection and time delay instantaneous overcurrent protection adaptively. Finally, simulated results using DIgSILENT PowerFactory demonstrate the validity of the proposed adaptive scheme for the current protection in the distributed network.
机译:随着风力发电机在分布式网络中的集成,电流和故障电流特性已经改变。在撬杆电路被激活之后,双馈感应发生器(DFIG)的负序阻抗与正序阻抗相比不同。这一特征对保护系统的运行构成了重大挑战。目前保护的传统设定原理是基于假设来源的正和负序列阻抗是相同的,这不再满足。分析了这种独特特性对不同故障类型和故障位置下的短路电流的影响,并引入了校正因子以改变瞬时过电流保护和时滞瞬时过电流保护的设定值。最后,使用DigSilent PowerFactory的模拟结果证明了用于分布式网络中当前保护的所提出的自适应方案的有效性。

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