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Optimal Cost of Voltage Security Control Using Voltage Dependent Load Models in Presence of Demand Response

机译:在需求响应存在下使用电压依赖负载模型的电压安全控制的最佳成本

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摘要

This paper proposes a new framework for corrective voltage control (CVC) of power systems. It ensures a desired loading margin (LM) after encountering severe contingencies while minimizing the corresponding control costs. The framework is divided into primary CVC (PCVC) and secondary CVC (SCVC) stages for restoration of voltage stability and ensuring a desired LM. These stages are based on the sequence and quickness of the control actions required in post-contingency state of the system. The PCVC sub problem deals with the condition faced by a power system subject to voltage instability as the result of severe contingencies. Such control is merely devised to restore system stability. Next, in the SCVC sub problem that follows PCVC, the system operating point is modified such that a desired LM is ensured, and hence voltage security of the system is achieved. The active and reactive power redispatch of generation units and involuntary load curtailment are employed along with the voluntary demand-side participations as control facilities in PCVC and SCVC sub problems, by deploying a proper voltage dependent static model for loads. The proposed framework is examined on the IEEE 118-bus system. The numerical results substantiate the effectiveness of the proposed approach.
机译:本文提出了一种电力系统校正电压控制(CVC)的新框架。它在遇到严重的突发事件时确保了期望的加载边距(LM),同时最小化相应的控制成本。该框架分为主CVC(PCVC)和辅助CVC(SCVC)级,用于恢复电压稳定性并确保所需的LM。这些阶段基于系统后应急状态所需的控制动作的序列和迅速。 PCVC子问题处理电力系统面临的条件,由于严重的突发事件而受到电压不稳定的。这种控制仅用于恢复系统稳定性。接下来,在跟随PCVC的SCVC子问题中,修改系统操作点,使得确保所需的LM,因此实现了系统的电压安全性。通过部署用于负载的适当电压相关的静态模型,在PCVC和SCVC子问题中作为控制设施,采用了生成单位和非自愿载荷缩减的主动和无能的电力重新分析。在IEEE 118总线系统上检查了所提出的框架。数值结果证实了所提出的方法的有效性。

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