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Voltage Stability and Reactive Power Sharing in Inverter-Based Microgrids With Consensus-Based Distributed Voltage Control

机译:基于共识的分布式电压控制的逆变器微电网中的电压稳定性和无功功率均压

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摘要

We propose a consensus-based distributed voltage control (DVC) that solves the problem of reactive power sharing in autonomous inverter-based microgrids with dominantly inductive power lines and arbitrary electrical topology. Opposed to other control strategies available thus far, the control presented here does guarantee a desired reactive power distribution in steady state while only requiring distributed communication among inverters, i.e., no central computing nor communication unit is needed. For inductive impedance loads and under the assumption of small phase angle differences between the output voltages of the inverters, we prove that the choice of the control parameters uniquely determines the corresponding equilibrium point of the closed-loop voltage and reactive power dynamics. In addition, for the case of uniform time constants of the power measurement filters, a necessary and sufficient condition for local exponential stability of that equilibrium point is given. The compatibility of the DVC with the usual frequency droop control for inverters is shown and the performance of the proposed DVC is compared with the usual voltage droop control via simulation of a microgrid based on the Conseil International des Grands Reseaux Electriques (CIGRE) benchmark medium voltage distribution network.
机译:我们提出了一种基于共识的分布式电压控制(DVC),该控制解决了基于自主逆变器的微电网中无功功率共享问题,该微电网以感应电力线和任意电气拓扑为主。与目前可用的其他控制策略相反,这里介绍的控制确实保证了稳态下所需的无功功率分配,而只需要逆变器之间的分布式通信,即不需要中央计算或通信单元。对于感性阻抗负载,在逆变器输出电压相位角差小的假设下,证明了控制参数的选择唯一地决定了闭环电压和无功功率动态的对应平衡点。此外,对于功率测量滤波器时间常数均匀的情况,给出了该平衡点局部指数稳定性的必要和充分条件。图中显示了DVC与逆变器常用频降控制的兼容性,并通过模拟基于Conseil International des Grands Reseaux Electriques(CIGRE)基准中压配电网的微电网,将所提出的DVC的性能与通常的电压下降控制进行了比较。

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