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Distributed Secondary Voltage Control in Islanded Microgrids With Consideration of Communication Network and Time Delays

机译:考虑通信网络和时间延迟,岛状微电网中分布的二次电压控制

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The extensive usage of open communication mechanisms in distributed secondary control of islanded microgrids (MGs) suggests that the effects of the communication network and time delays on system performance cannot be negligible. Based on the relationship between convergence and algebraic connectivity, this paper proposes an optimal design for a directed communication topology and pinning location through the mirror operation and global propagation rates, respectively. Alternatively, a small-signal dynamic model of an MG equipped with time-delayed distributed secondary voltage control is derived, to investigate the delay-dependent stability of MG system in terms of the controller, network and pinning conditions. An analytical formula is then developed to determine the individual delay margins with respect to different sets of controller gains and pinning. Through a series of trials, the qualitative effects of controller parameters and pinning conditions on delay margins can be used to guide the design of both controllers and pinning for the improved system performance. The effectiveness of proposed methodology is verified via the real-time hardware-in-the-loop (HIL) simulations.
机译:广泛的孤岛微电网(MGS)分布式二级控制中的开放通信机制的广泛使用表明,通信网络和时间延迟对系统性能的影响不能忽略不计。基于收敛和代数连接之间的关系,本文分别通过镜像操作和全局传播速率提出了针对定向通信拓扑和钉扎位置的最佳设计。或者,推导出配备有时间延迟分布式二次电压控制的MG的小信号动态模型,以研究MG系统的延迟依赖性稳定性,在控制器,网络和钉扎条件方面。然后开发出分析公式以确定关于不同的控制器增益和钉扎的各个延迟边缘。通过一系列试验,控制器参数和挡住条件对延迟边缘的定性效果可用于指导控制器的设计,并为改进的系统性能设计。通过实时硬件(HIL)仿真验证了所提出的方法的有效性。

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