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Decentralized Primary and Distributed Secondary Control for Current Sharing and Voltage Regulation in DC Microgrid Clusters with HESS

机译:DC微电网与HESS中电流共享和电压调节的分散的初级和分布式二次控制

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The uncertainties caused by renewable energy sources (RESs), droop control, etc. often undermine the performance of distributed DC microgrids. In this paper, we have investigated the functioning of a novel consensus-based secondary control strategy to achieve proportionate current sharing and voltage synchrony in a generalized networked multiple DC microgrid clusters with hybrid energy storage system (HESS) by compensating mismatches in droop coefficients, line resistances, etc. Alongside, frequency based power sharing and voltage regulation is achieved in a decentralized manner to circumvent load transitions. An optimal, event-based communication strategy has been designed for the sharing of state information with neighboring converters over limited bandwidth. Design procedure, stability analysis, performance under communication adversities are provided to help determine the suitability of the proposed technique. Finally, simulation results for different test-cases are presented to validate the efficacy and robustness of the proposed method.
机译:可再生能源(RESS),下垂控制等引起的不确定性经常破坏分布式DC微电网的性能。在本文中,我们研究了一种新的共识的二级控制策略的运作,通过补偿Droop系数,线路中的不匹配来实现具有混合能量存储系统(HESS)的通用网络多DC微电网集群中的比例电流共享和电压同步。电阻等以及基于频率的功率共享和电压调节以分散的方式实现,以避免负载过渡。基于事件的基于事件的通信策略被设计用于与有限带宽的相邻转换器共享状态信息。设计程序,稳定性分析,提供通信逆境的性能,以帮助确定所提出的技术的适用性。最后,提出了不同测试用例的仿真结果,以验证所提出的方法的功效和鲁棒性。

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