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Fully distributed voltage control in subtransmission networks via virtual power plants

机译:通过虚拟发电厂的子传输网络中的完全分布式电压控制

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In this paper, we propose a fully distributed control approach to deal with voltage violations in a subtransmission network with high penetration of wind power. The controllers used are virtual power plants (VPPs) in the subtransmission network. During the control process, each load bus monitors its own bus voltage. If there is a voltage violation detected, then all VPPs will be activated at once to provide necessary reactive power support. The reactive power change required for each VPP is calculated through two step communications based on different purposes. The first step communication aims to calculate a single sensitivity needed for each load bus with VPP, whereas the second step communication aims to calculate the final reactive power change needed for each VPP based on the sensitivities obtained through an average consensus. Semidefinite programming is used in the second step communication to optimize the weight matrix such that the convergence speed for the average consensus is the fastest possible. The effectiveness of the proposed control scheme is tested through a modified IEEE 14-bus system with wind farms.
机译:在本文中,我们提出了一种完全分布式的控制方法,以解决具有高风电渗透率的子传输网络中的电压违规问题。所使用的控制器是子传输网络中的虚拟电厂(VPP)。在控制过程中,每个负载母线都会监视自己的母线电压。如果检测到电压违规,则将立即激活所有VPP,以提供必要的无功功率支持。每个VPP所需的无功功率变化是通过基于不同目的的两步通信来计算的。第一步通信旨在计算使用VPP的每个负载总线所需的单个灵敏度,而第二步通信旨在基于通过平均共识获得的灵敏度来计算每个VPP所需的最终无功功率变化。在第二步通信中使用半定编程来优化权重矩阵,以使平均共识的收敛速度最快。通过带有风电场的改进的IEEE 14总线系统,对所提出的控制方案的有效性进行了测试。

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