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A Virtual Impedance Optimization Method for Reactive Power Sharing in Networked Microgrid

机译:网络微电网无功共享的虚拟阻抗优化方法

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摘要

Unlike the typical microgrid with a common ac bus, networked microgrid always suffers more serious reactive power sharing issues due to its complex inner structure. In such case, the system reactive power sharing error cannot be easily evaluated and eliminated. So, this paper proposes a wireless control strategy that employs optimized virtual impedance controllers and local load measurements for the reactive power sharing in networked microgrid. First, from the modeling of microgrid network, an estimation method for network reactive power sharing error is derived. Through the estimation method-based network feature analyses, corresponding design for virtual impedance controller is presented. Then, by introducing genetic algorithm, virtual impedance controller parameters of each distributed generation unit are optimized, which aims to minimize the microgrid global reactive power sharing error. The parameter optimization process is performed offline in microgrid configuration stage. By using these optimized virtual impedance controllers, the reactive power sharing performance of a networked microgird can be greatly improved. Finally, the accuracy of the estimation method is validated by MATLAB simulation results, and the feasibility of the proposed virtual impedance optimization method is verified through real power experiments.
机译:与具有公共交流总线的典型微电网不同,联网的微电网由于其复杂的内部结构始终遭受更严重的无功共享问题。在这种情况下,无法轻松评估和消除系统无功功率分配误差。因此,本文提出了一种无线控制策略,该策略采用优化的虚拟阻抗控制器和本地负载测量来实现联网微电网中的无功功率共享。首先,从微电网模型出发,推导了网络无功共享误差的估计方法。通过基于估计方法的网络特征分析,提出了虚拟阻抗控制器的相应设计。然后,通过引入遗传算法,优化了每个分布式发电单元的虚拟阻抗控制器参数,以最小化微电网的全局无功功率共享误差。参数优化过程在微电网配置阶段离线执行。通过使用这些优化的虚拟阻抗控制器,可以大大提高联网微电网的无功功率共享性能。最后,通过MATLAB仿真结果验证了估计方法的准确性,并通过有功功率实验验证了该虚拟阻抗优化方法的可行性。

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