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Tertiary control of voltage unbalance compensation for optimal power quality in islanded microgrids

机译:电压不平衡补偿的第三级控制,用于孤岛微电网的最佳电能质量

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摘要

Summary form only given. In multi-bus islanded microgrids, the power quality requirements for different areas and buses can be different. This paper proposes a hierarchical control to realize optimal unbalance compensation for satisfying the power quality requirements in different areas. Primary and secondary controllers are applied to realize unbalance compensation for critical bus (CB) and at the same time, to make distributed generators (DGs) equally share the compensation efforts. Tertiary control, which inherently is an optimization method, is implemented to adjust the compensating effort of each DG considering the voltage unbalance limits in local buses and DG terminals. This method realizes multi-power-quality-level control in a multi-bus islanded system by optimally utilizing DGs as distributed compensators and saves the investment for additional compensation equipment. Hardware-in-the-loop results demonstrate the effectiveness of the method.
机译:仅提供摘要表格。在多总线孤岛微电网中,不同区域和总线的电能质量要求可能不同。本文提出了一种分层控制,以实现最佳的不平衡补偿,以满足不同地区的电能质量要求。应用主控制器和副控制器来实现关键母线(CB)的不平衡补偿,同时使分布式发电机(DG)均等地承担补偿工作。考虑到本地总线和DG端子中的电压不平衡限制,实施了本质上是一种优化方法的三次控制,以调整每个DG的补偿效果。该方法通过将DG作为分布式补偿器来优化利用,从而在多总线孤岛系统中实现了多功率质量级控制,从而节省了额外补偿设备的投资。硬件在环结果证明了该方法的有效性。

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