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首页> 外文期刊>IEEE Transactions on Power Systems >Fast Local Voltage Control Under Limited Reactive Power: Optimality and Stability Analysis
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Fast Local Voltage Control Under Limited Reactive Power: Optimality and Stability Analysis

机译:受限无功功率下的快速本地电压控制:最优性和稳定性分析

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High penetration of distributed energy resources presents several challenges and opportunities for voltage regulation in power distribution systems. A local reactive power (VAR) control framework will be developed that can fast respond to voltage mismatch and address the robustness issues of (de-)centralized approaches against communication delays and noises. Using local bus voltage measurements, the proposed gradient-projection based schemes explicitly account for the VAR limit of every bus, and are proven convergent to a surrogate centralized problem with proper parameter choices. This optimality result quantifies the capability of local VAR control without requiring any real-time communications. The proposed framework and analysis generalize earlier results on the droop VAR control design, which may suffer from under-utilization of VAR resources in order to ensure stability. Numerical tests have demonstrated the validity of our analytical results and the effectiveness of proposed approaches implemented on realistic three-phase systems.
机译:分布式能源的高渗透率给配电系统中的电压调节带来了许多挑战和机遇。将开发一种本地无功功率(VAR)控制框架,该框架可快速响应电压失配并解决针对通信延迟和噪声的非集中式方法的鲁棒性问题。使用本地总线电压测量,所提出的基于梯度投影的方案明确考虑了每条总线的VAR极限,并被证明收敛于具有适当参数选择的替代集中式问题。该最优结果量化了本地VAR控制的能力,而无需任何实时通信。所提出的框架和分析概括了下垂VAR控制设计的早期结果,为了确保稳定性,VAR控制资源的利用率可能不足。数值测试证明了我们分析结果的有效性以及在实际的三相系统上实施的拟议方法的有效性。

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