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A Two-Stage Distributed Architecture for Voltage Control in Power Distribution Systems

机译:配电系统中电压控制的两阶段分布式架构

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In this paper, we propose an architecture for voltage regulation in distribution networks that relies on controlling reactive power injections provided by distributed energy resources (DERs). A local controller on each bus of the network monitors the bus voltage and, whenever there is a voltage violation, it uses locally available information to estimate the amount of reactive power that needs to be injected into the bus in order to correct the violation. If the DERs connected to the bus can collectively provide the reactive power estimated by the local controller, they are instructed to do so. Otherwise, the local controller initiates a request for additional reactive power support from other controllers at neighboring buses through a distributed algorithm that relies on a local exchange of information among neighboring controllers. We show that the proposed architecture helps prevent voltage violations and shapes the voltage profile in radial distribution networks, even in the presence of considerable penetration of variable generation and loads. We present several case studies involving 8-, 13-, and 123-bus distribution systems to illustrate the operation of the architecture.
机译:在本文中,我们提出了一种配电网络中的电压调节架构,该架构依赖于控制由分布式能源(DER)提供的无功功率注入。网络每条总线上的本地控制器都会监视总线电压,并且每当发生电压违规时,它就会使用本地可用信息来估计需要注入总线中的无功功率量,以纠正这种违规情况。如果连接到总线的DER可以共同提供由本地控制器估算的无功功率,则指示它们这样做。否则,本地控制器通过依赖于相邻控制器之间本地信息交换的分布式算法,从相邻总线处的其他控制器发起对其他无功功率支持的请求。我们表明,即使在存在可变发电量和负荷的情况下,所提出的体系结构也有助于防止电压违规并影响径向配电网中的电压分布。我们提出了一些涉及8、13和123总线配电系统的案例研究,以说明该体系结构的操作。

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