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Power system dynamic enhancement using phase imbalanced series capacitive compensation and DFIG-based wind farms

机译:使用相位不平衡串联电容补偿和基于DFIG的风电场进行电力系统动态增强

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This paper investigates the potential use of supplemental controls of DFIG-based wind farms combined with a phase imbalanced hybrid series capacitive compensation scheme for damping power system oscillations. In the hybrid scheme, two phases are compensated by fixed series capacitors (C) and the third phase is compensated by a TCSC in series with a fixed capacitor (Cc). The paper also addresses the recent concern over the case of large share of wind power generation which results in reducing the total inertia of the synchronous generators and degrading the system transient stability. It shows that in such a case; properly designed supplemental controls for the DFIG back-to-back converters could be an asset in improving the system transient stability rather than degrading it. The effectiveness of the supplemental controls in damping power system oscillations is evaluated using the EMTP-RV program.
机译:本文研究了基于DFIG的风电场的补充控制与相平衡不平衡混合串联电容补偿方案相结合的阻尼电源系统振荡的潜在用途。在混合方案中,两相由固定串联电容器(C)补偿,第三相由与固定电容器(Cc)串联的TCSC补偿。本文还解决了近期对风力发电份额较大的担忧,这会导致同步发电机的总惯量减小并降低系统的暂态稳定性。它表明在这种情况下;为DFIG背对背转换器设计适当的补充控制可能是提高系统瞬态稳定性而不是降低其稳定性的一项资产。使用EMTP-RV程序可以评估辅助控制在阻尼电力系统振荡中的有效性。

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