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首页> 外文期刊>Trends in Ecology & Evolution >A Distributed Cooperative Control Algorithm for Optimal Power Flow and Voltage Regulation in DC Power System
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A Distributed Cooperative Control Algorithm for Optimal Power Flow and Voltage Regulation in DC Power System

机译:一种分布式协作控制算法,用于直流电力系统的最优电流和电压调节

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摘要

Power loss and voltage regulation are two fundamental and challenging issues in DC distributed generation system. In this paper, a multi-objective optimization problem is established to achieve trade-offs between reducing power loss and decreasing voltage deterioration by adjusting the weighting coefficients. This problem is proven to be a convex optimization under constant impedance load and constant current load. A distributed algorithm based on random coordinate descent method is developed to solve this problem without acquiring the information of line impedance. Thus, the optimal operating point of the system can be found automatically in real-time, and the deviation of optimal solution caused by the fluctuation of network parameters is avoided. In addition, the complexity of this algorithm is low and its computational requirement is reduced in practice. Finally, case studies are implemented to verify the effectiveness of the proposed algorithm under the scenarios of line parameter fluctuation, load variation, communication line failure, and plug-play capabilities.
机译:功率损耗和电压调节是DC分布生成系统中的两个基本和挑战性问题。在本文中,建立了多目标优化问题,以通过调整加权系数来实现降低功率损耗和降低电压劣化之间的权衡。在恒定阻抗负载和恒定电流负载下,该问题被证明是凸优化。开发了一种基于随机坐标阶段方法的分布式算法来解决这个问题而不获取线阻抗的信息。因此,可以实时地自动发现系统的最佳操作点,避免了由网络参数波动引起的最佳解决方案的偏差。此外,该算法的复杂性低,其计算要求在实践中减少。最后,实施案例研究以验证在线参数波动,负载变化,通信线路故障和即插即用功能的情况下所提出的算法的有效性。

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