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Primary Voltage Control in Active Distribution Networks via Broadcast Signals: The Case of Distributed Storage

机译:有源配电网中通过广播信号进行的一次电压控制:分布式存储的情况

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In this paper, we consider an active distribution network (ADN) that performs primary voltage control using real-time demand response via a broadcast low-rate communication signal. The ADN also owns distributed electrical energy storage. We show that it is possible to use the same broadcast signal deployed for controlling loads to manage the distributed storage. To this end, we propose an appropriate control law to be embedded into the distributed electrical storage controllers that reacts to the defined broadcast signal in order to control both active and reactive power injections. We analyze, in particular, the case where electrical storage systems consist of supercapacitor arrays and where the ADN uses the grid explicit congestion notification (GECN) for real-time demand response that the authors have developed in a previous contribution. We estimate the energy reserve required for successfully performing voltage control depending on the characteristics of the network. The performance of the scheme is numerically evaluated on the IEEE 34-node test feeder. We further evaluate the effect, depending on the line characteristics, of reactive versus active power controlled injections. We find that without altering the demand-response signal, a suitably designed controller implemented in the storage devices enables them to successfully contribute to primary voltage control.
机译:在本文中,我们考虑一种有源配电网(ADN),该有源配电网通过广播的低速率通信信号使用实时需求响应来执行一次电压控制。 ADN还拥有分布式电能存储。我们展示了可以使用部署用于控制负载的相同广播信号来管理分布式存储。为此,我们建议将适当的控制律嵌入到分布式电存储控制器中,以对定义的广播信号做出反应,以控制有功功率和无功功率注入。我们特别分析了以下情况:蓄电系统由超级电容器阵列组成,并且ADN将电网显式拥塞通知(GECN)用于作者在先前的贡献中开发的实时需求响应。我们根据网络的特性估算成功执行电压控制所需的能量储备。该方案的性能在IEEE 34节点测试馈送器上进行了数字评估。我们将根据线路特性进一步评估无功功率控制与有功功率控制注入的效果。我们发现,在不改变需求响应信号的情况下,在存储设备中实施适当设计的控制器可使它们成功地对初级电压控制做出贡献。

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