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Design of Resonance Damper for Wind Energy Conversion System Providing Frequency Support Service to Low Inertia Power Systems

机译:用于低惯性电力系统的风能转换系统共振阻尼器设计

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Due to the higher proportion of non-synchronous power resources in microgrids, adequate frequency regulation supports are required to maintain acceptable system frequency stability. As one of the sources for frequency regulation support in microgrid operation, via proper droop controller operations, wind energy conversion systems (WECS) could deliver kinetic energy stored in their turbines to the grid when needed. However, as the system inertia becomes smaller, the droop controller's response to system disturbances could cause the WECS to resonate with the grid and lead to torsional stress and fatigue damage in the WECS drivetrain. To protect the WECS against such damage, a resonance damper based on pole-zero cancellation technique is proposed in this paper. Simulation results depict the possible resonance phenomenon, and the reduction of undesired fatigue damage by the proposed damper retrofitted to the droop controller while improving the overall frequency regulation. Sensitivity analysis results are also provided to verify its robustness for practical applications.
机译:由于微电网中的非同步电力资源比例较多,需要足够的频率调节支撑来维持可接受的系统频率稳定性。作为微电网运行中的频率调节支持的源极之一,通过适当的下垂控制器操作,风能转换系统(WECs)可以在需要时将存储在其涡轮机中的动能能量提供给网格。然而,随着系统惯性变小,下垂控制器对系统干扰的响应可能导致WEC与电网共鸣,并导致WECS动力传动系统中的扭转应力和疲劳损坏。为了保护WECS免受这种损坏,本文提出了一种基于极零消除技术的共振阻尼器。仿真结果描绘了可能的谐振现象,并通过提出的阻尼器改装在改善整体频率调节的同时将不希望的阻尼器造成不希望的疲劳损坏。还提供了敏感性分析结果以验证其对实际应用的鲁棒性。

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