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Assessment of Grid Strength Considering Interactions between Inverter-based Resources and Shunt Capacitors

机译:考虑基于逆变器资源与分流电容的相互作用的电网力量评估

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While the increasing penetration of renewable energy resources into the electric power grid improves energy efficiency and reduces greenhouse gas emissions, it may drive the grid towards weak power grid conditions, under which grid stability issues may affect the operation of inverter-based renewable generators. The short-circuit ratio (SCR) with some modifications has been used to analyze power grid strength. However, the existing SCR-based methods for grid strength assessment neglect the impact of the interactions between shunt capacitors interconnected through the power network, which may cause over-optimistic results of grid strength assessment. To account for the impact, a novel method for grid strength assessment is proposed in this paper by theoretical analysis of how the interconnected capacitors affect static voltage stability. The efficacy of the proposed method is demonstrated through numerical simulation case studies on the IEEE 39-bus system.
机译:虽然可再生能源资源进入电力电网的渗透性提高了能量效率并减少了温室气体排放,但它可能会驱动电网朝向弱电网条件,在此,电网稳定性问题可能会影响逆变器的可再生发电机的运行。采用一些修改的短路比(SCR)用于分析电网强度。然而,基于SCR的基于SCR的基于SCR力量评估的方法忽略了通过电网互联的分流电容器之间的相互作用的影响,这可能导致网格强度评估的过度乐观结果。为了考虑影响,通过理论分析互连电容如何影响静电电压稳定性的理论分析,提出了一种新的电网力量评估方法。通过IEEE 39总线系统的数值模拟案例研究证明了所提出的方法的功效。

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