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Power Flow Analysis for Hybrid AC/DC Microgrid Islanding Operation Based on an Improved Adaptive Droop Control

机译:基于改进的自适应下垂控制的交流/直流微电网孤岛孤岛运行潮流分析

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Hybrid AC/DC microgrid is consist of AC subsystem, DC subsystem and an interlinking converter (ILC) used for connecting the subsystems. Flexible integration and coordination of different distributed generations (DGs) is essential to meet the increasing demand for electricity. The impacts of frequency and voltage offset caused by load fluctuation have not been considered in the existing control strategies of autonomous microgrid, such as droop control, master-slave control, and average current-sharing control. To address this issue, an improved adaptive peer-to-peer droop control strategy is proposed herein, which is applicable to hybrid AC/DC microgrid in islanding operation mode. Moreover, the corresponding power flow model and solution algorithm are established. The improved control strategy performs well with any load fluctuation, which can not only allocate active power imbalance according to the capacity ratio of all DGs to protect them from overload, but also it is able to maintain frequency and voltage stability in a further step. The effectiveness and feasibility of the proposed method is validated using a bunch of test results on a modified autonomous hybrid AC/DC microgrid.
机译:AC / DC混合微电网由AC子系统,DC子系统和用于连接子系统的互连转换器(ILC)组成。灵活地集成和协调不同的分布式发电(DG),对于满足不断增长的电力需求至关重要。现有的自主微电网控制策略,例如下垂控制,主从控制和均流控制,都没有考虑到由负载波动引起的频率和电压偏移的影响。为了解决这个问题,本文提出了一种改进的自适应对等下垂控制策略,该策略适用于孤岛操作模式下的混合AC / DC微电网。此外,建立了相应的潮流模型和求解算法。改进后的控制策略在任何负载波动下均表现良好,不仅可以根据所有DG的容量比分配有功功率不平衡,以保护它们免受过载的影响,而且还可以在进一步的步骤中保持频率和电压的稳定性。该方法的有效性和可行性通过在改进的自主混合式AC / DC微电网上使用一堆测试结果进行了验证。

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