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Static Voltage Security Region-Based Coordinated Voltage Control in Smart Distribution Grids

机译:智能配电网中基于静态电压安全区域的协调电压控制

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The high penetration levels of distributed generators (DGs), on the one hand, make the operational state of distribution grids increasingly complex; on the other hand, they enrich voltage regulation measures. Consequently, a voltage control strategy of the distribution grid for coordinating DGs and other voltage regulation devices is needed. This paper applies the security region methodology to coordinated voltage control. To meet the demand of online voltage security assessment and control in the distribution grids, a hyperplane expression for the boundary of the static voltage security region (SVSR) in complex power injection spaces is derived, and a corresponding fast generation method is proposed. Additionally, based on SVSR, a two-stage voltage control strategy is proposed. In the first stage, the regulation devices are automatically selected according to the coefficients in the hyperplane expressions, and the regulation effect can be estimated by SVSR. In the second stage, the outputs of the devices are determined by utilizing an optimization technique. The proposed voltage control strategy is tested by using a modified PG&E69-bus distribution grid, and the results verify the effectiveness.
机译:一方面,分布式发电机(DG)的高渗透水平使配电网的运行状态变得越来越复杂;另一方面,分布式电网的运行状态也越来越复杂。另一方面,它们丰富了电压调节措施。因此,需要用于协调DG和其他电压调节装置的配电网的电压控制策略。本文将安全区域方法应用于协调电压控制。为满足配电网在线电压安全评估与控制的需求,推导了复杂电力注入空间中静态电压安全区域(SVSR)边界的超平面表达式,并提出了相应的快速生成方法。另外,基于SVSR,提出了一种两阶段电压控制策略。在第一阶段,根据超平面表达式中的系数自动选择调节装置,并且可以通过SVSR估算调节效果。在第二阶段,通过利用优化技术来确定设备的输出。通过使用改进的PG&E69-bus配电网对所提出的电压控制策略进行了测试,结果验证了其有效性。

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