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Optimal coordination of voltage control devices in distribution systems connected to distributed generations

机译:连接到分布式代代的分配系统中电压控制装置的最佳协调

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Voltage regulation issue in the distribution network is considered as a challenge that is associated with high penetration of the distributed generations (DGs). The widespread of the DGs led to influence the operation of the reactive power compensation (RPC) devices and the on-load tap-changers (OLTCs) and significantly affected the voltage profile. Therefore, obtaining the suitable control settings for the OLTC and the RPC should be reconsidered considering the impact of the DGs. This paper proposes a strategy for coordinating the operation of the OLTC and the RPC with DGs in the distribution networks. The proposed coordination strategy obtains the optimal values of the active power generated from the DGs, the reactive power injected from the switched capacitors (SCs), and the tap settings of the OLTC by using the multi-objective particle swarm optimization (MOPSO). The objective function is to minimize the total active power losses for all lines and the total voltage deviation for all nodes in the distribution network. The proposed coordination strategy is tested on the modified IEEE 33-node test feeder and a practical distribution feeder extracted from the North Delta Electricity Distribution Company in Egypt. A MATLAB code is built in this paper for simulation of the case studies and for determining the optimal parameters. A comprehensive comparison between the proposed MOPSO and the mixed-integer linear programming (MILP) method for different operating conditions of the distribution network is made. The results demonstrate that, the proposed strategy decreases the power losses, improves the voltage regulation and provides efficient coordination of DG with the voltage regulating devices; SCs and OLTC.
机译:分发网络中的电压调节问题被认为是与分布代(DGS)的高渗透相关联的挑战。 DGS的广泛导致影响无功功率补偿(RPC)器件的操作和负载分接开关(OLTC)并显着影响电压曲线。因此,考虑到DGS的影响,应重新考虑获得OLTC的合适控制设置和RPC。本文提出了一种协调OLTC和RPC在分配网络中的DGS的操作的策略。所提出的协调策略获得从DGS产生的有源功率的最佳值,通过使用多目标粒子群优化(MOPSO)来获取从开关电容器(SCS)的无功功率,以及OLTC的抽头设置。目标函数是最小化所有线路的总有效功率损耗以及分配网络中所有节点的总电压偏差。在改进的IEEE 33节点测试馈线和从埃及北三角电力分配公司提取的实用分配饲养器测试了所提出的协调策略。本文建立了MATLAB代码,用于模拟案例研究,并确定最佳参数。制作了所提出的MOPSO和混合整数线性编程(MILP)方法的全面比较,用于分销网络的不同操作条件。结果表明,所提出的策略降低了功率损耗,提高了电压调节,并通过电压调节装置提供了高效的DG协调; SCS和OLTC。

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