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Model-Free Optimal Control of VAR Resources in Distribution Systems: An Extremum Seeking Approach

机译:配电系统中VAR资源的无模型最优控制:一种极值搜索方法

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摘要

Distributed power electronic reactive power sources-such as smart PV inverters-may play an important role in regulating customer voltages and reducing system losses in future distribution systems. Though it is natural to consider model-based optimal control algorithms to coordinate these resources, those strategies typically require relatively large communications capabilities and accurate models. In this paper we present an alternative way to implement the optimization problem that circumvents these communications and modeling challenges. We present an Extremum Seeking (ES) control algorithm to modulate the reactive power output of VAR resources to minimize total real power delivery at the feeder substation subject to voltage magnitude constraints, without an explicit feeder model. We present results that guarantee a variety of distribution feeder objective functions are convex over a broad range of power flows and perform an analysis showing the convergence of the ES approach. Simulation results demonstrate that the method is equivalent to recently developed convex relaxations used to solve distribution optimal power flow problems.
机译:分布式电源电子无功功率源(例如智能PV逆变器)可能在调节客户电压和减少未来配电系统中的系统损耗方面发挥重要作用。尽管考虑基于模型的最佳控制算法来协调这些资源是很自然的,但是这些策略通常需要相对较大的通信能力和准确的模型。在本文中,我们提出了另一种方法来实现优化问题,以解决这些通信和建模挑战。我们提出了一种极值搜索(ES)控制算法,用于调制无功功率输出的无功功率,以在不使用明确馈线模型的情况下,在受电压幅度约束的情况下,将馈线变电站的总有功功率最小化。我们提供的结果可确保各种配电馈线目标函数在大范围的潮流中凸出,并进行分析以显示ES方法的收敛性。仿真结果表明,该方法等效于最近开发的用于解决配电最优潮流问题的凸松弛法。

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