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Sliding-Mode Control of AC Voltages and Currents of Dispatchable Distributed Energy Resources in Master-Slave-Organized Inverter-Based Microgrids

机译:主从机逆变器微电网中交流电压和可分配分布式能源电流的滑模控制

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摘要

This paper proposes a current-controlled voltage-mode control scheme for dispatchable electronically coupled distributed energy resource (DER) units based on sliding-mode control (SMC) strategy. The proposed control strategy provides fast and stable control on the terminal voltage and frequency of DER unit and ensures protection of the power-electronic interface to external faults. In addition it maintains the quality of the output voltage of the host DER unit in spite of unbalanced and/or distorted load currents. Performance of the proposed SMC strategy is demonstrated through time-domain simulation of a single islanded DER unit, starting from black-start and subjected to various operating scenarios, and it is compared to the performance of a proportional-integral (PI) based control strategy. Also a current-mode control strategy is proposed for DER units based on SMC. The performance of both voltage- and current-mode control strategies are demonstrated in a sample master-slave organized three-unit microgrid.
机译:本文提出了一种基于滑模控制(SMC)策略的可调度电子耦合分布式能源(DER)单元的电流控制电压模式控制方案。所提出的控制策略可对DER单元的端子电压和频率提供快速稳定的控制,并确保保护电力电子接口免受外部故障的影响。此外,即使负载电流不平衡和/或失真,它也可以保持主机DER单元输出电压的质量。通过从黑启动开始并经受各种操作情况的单个孤岛DER单元的时域仿真,证明了所提出的SMC策略的性能,并将其与基于比例积分(PI)的控制策略的性能进行了比较。 。提出了基于SMC的DER单元电流模式控制策略。电压模式和电流模式控制策略的性能在一个示例性的主从式组织的三单元微电网中得到了证明。

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