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Coordinated Control of a DG and Voltage Control Devices Using a Dynamic Programming Algorithm

机译:DG和电压控制设备的协调控制,采用动态编程算法

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This paper presents a new control method, in which a distributed generator (DG) actively participates in steady-state voltage control, together with an under-load tap changer (ULTC) and shunt capacitors (Sh.Cs). In the conventional DG control method, the integration of DGs into a distribution power system increases the number of switching operations of the ULTC and the Sh.Cs. To solve this problem, this paper proposes that the DG output voltage be dispatched cooperatively with the operation of the ULTC and the Sh.Cs, based on load forecasts for one day in advance. The objective of the proposed method is to decrease the number of switching device operations, as well as to reduce the power loss in the distribution lines, while maintaining the grid voltage within the allowed range. The proposed method is designed and implemented with Matlab, using two different dynamic programming algorithms for a dispatchable and a nondispatchable DG, respectively. Simulation studies demonstrate that the objective can be achieved under various grid conditions, determined by factors such as the DG output power characteristics, the location of the DG-connected bus on the feeder, and the load profile of the feeder containing the DG.
机译:本文提出了一种新的控制方法,其中分布式发电机(DG)与欠载分接开关(ULTC)和并联电容器(Sh.Cs)一起积极参与稳态电压控制。在传统的DG控制方法中,将DG集成到配电系统中会增加ULTC和Sh.C的开关操作次数。为了解决这个问题,本文建议根据提前一天的负荷预测,与ULTC和Sh.Cs的运行协同分配DG输出电压。所提出的方法的目的是在保持电网电压在允许范围内的同时,减少开关设备的操作次数,并减少配电线路中的功率损耗。所提出的方法是使用Matlab设计和实现的,分别针对可调度DG和不可调度DG使用两种不同的动态规划算法。仿真研究表明,该目标可以在各种电网条件下实现,具体取决于诸如DG输出功率特性,与DG连接的DG在馈线上的位置以及包含DG的馈线的负载曲线等因素。

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