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An adaptive zone-division approach for voltage control of power grid with distributed wind farms: A case study of a regional power grid in central south China

机译:分布式风电场对电网电压的自适应分区控制方法-以华南中部区域电网为例

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摘要

With the increasing penetration level of wind power generation, it is essential to coordinate the dispersed win farms with the automatic voltage control (AVC) system to take part in the voltage regulation of the power grit In this paper, an adaptive zone-division approach is proposed to identify the optimal controllable zone for each wind farm. The reactive power generation capability of wind farms with inverters is adequately exploited. multidimensional V-Q sensitivity analysis is implemented to evaluate the ability of reactive power regulation based on which an online zone-division method is adopted to determine the control clusters for wind farms. The proposed approach can be applied in the AVC system of power grid to alleviate the regulation burden for voltage stability. Moreover, the reactive power generations from wind farms can be effectively utilized to improve the penetration of wind power. A case study on a regional power grid from central south China is carried out, which indicates that, with the proposed approach the capability to maintain the voltage stability for power system operations can be enhanced with more wind power penetration.
机译:随着风力发电渗透率的提高,必须将分散的发电场与自动电压控制(AVC)系统进行协调,以参与对砂砾的电压调节。本文采用了一种自适应分区方法建议为每个风电场确定最佳可控区域。具有逆变器的风电场的无功发电能力得到了充分利用。进行多维V-Q灵敏度分析以评估无功调节能力,在此基础上采用在线区域划分方法确定风电场的控制集群。所提出的方法可以应用于电网的AVC系统中,以减轻电压稳定性的调节负担。此外,可以有效利用风电场产生的无功功率来提高风电的普及率。通过对华南中部区域电网的案例研究,表明,通过所提出的方法,可以通过更多的风电渗透来增强维持电力系统运行的电压稳定性的能力。

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