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Distributed Coordinated Reactive Power Control for Voltage Regulation in Distribution Networks

机译:分布式网络中电压调节的分布式协调无功控制

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摘要

In this article, a novel distributed coordinated control framework is proposed to handle the uncertain voltage violations in active distribution networks. It addresses the problem of coordination of different types of devices in a distributed manner. In our control design, on-load tap changers (OLTCs) are firstly employed to handle the potential voltage violations based on the prediction of renewable outputs and load variations. During real-time operation, once an unmanageable voltage violation is detected, the reactive power of distributed energy resources (DERs) will be coordinated immediately to provide fast corrective control. The control schedules of OLTCs are calculated by solving a multitime-step constrained optimization problem via the alternating direction method of multipliers, whereas the reactive power injections of DERs are determined by a novel online distributed algorithm. The effectiveness of the proposed control framework is verified on the modified IEEE 34-bus and 123-bus test feeders.
机译:在本文中,提出了一种新颖的分布式协调控制框架来处理活动分配网络中的不确定电压违规。它以分布式方式解决了不同类型设备的协调问题。在我们的控制设计中,首先采用负载分接换动器(OLTC)来基于可再生输出和负载变化的预测来处理潜在电压违规。在实时操作期间,一旦检测到不管理的电压违规,就会立即协调分布式能量资源(DER)的无功功率以提供快速校正控制。通过通过乘法器的交替方向方法求解多次步骤约束优化问题来计算OLTC的控制调度,而DER的无功功率注射由新型在线分布式算法确定。所提出的控制框架的有效性在改进的IEEE 34总线和123总线测试馈线上验证。

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