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Reactive-Power Optimization Research Based on Load Fluctuation and Distributed Control

机译:基于负荷波动和分布式控制的无功功率优化研究

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This paper proposes a voltage-reactive power optimization, which is an integrated system based on centralized optimization and distributed control, to confine the action numbers of control devices. The system includes VQC (voltage and reactive power control system) and the optimal power flow calculation in the master station. By using the fractal theory, the original data in the range of nonperiodic cycles are divided into several time-intervals. After this processing, the optimal points are obtained by optimal power flow in every segment. Based on the load fluctuation rate, in every period, the voltage/reactive power limits of nine –area figure are set. As the load fluctuation rates changed in every segment, voltage/reactive power limits are different. And the tap changers and switchable capacitor banks are regulated according to each upper/lower limits and the optimal points. Furthermore, correctness and effectiveness of the proposed method have been confirmed. And the simulation results show that it not only reduces power losses but also restricts the action numbers of control device.
机译:本文提出了一种电压 - 无功功率优化,即基于集中优化和分布式控制的集成系统,限制了控制设备的动作数量。该系统包括VQC(电压和无功功率控制系统)和主站中的最佳功率流量计算。通过使用分形理论,非星期循环范围内的原始数据分为多个时间间隔。在该处理之后,通过每个段中的最佳功率流获获得最佳点。基于负载波动率,在每个时段中,​​设置九个图的电压/无功功率限制。随着每个段中的负载波动率发生变化,电压/无功功率限制是不同的。然后,根据每个上/下限和最佳点来调节分接器和可切换电容器组。此外,已经确认了所提出的方法的正确性和有效性。仿真结果表明,它不仅降低了功率损耗,还限制了控制设备的动作数量。

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