交流微电网负载突变时直流链路电压控制

W. Issa, S. Sharkh, Rashid Albadwawi, M. Abusara, T. Mallick
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引用次数: 4

摘要

交流微电网并联逆变器采用下垂控制可以实现精确的功率共享。然而,不同的电网线路阻抗会导致不同的暂态功率,从而导致逆变器在负载突然变化时传递或吸收的能量不同。这可能导致直流链路电压上升超过跳闸限制,导致逆变器关闭,从而降低整个微电网的可靠性。本文研究了线路阻抗失配对负载突变时直流电压稳定性的影响,并提出了一种控制干扰时直流电压的方案。仿真和实验结果验证了所提控制器的有效性。
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DC link voltage control during sudden load changes in AC microgrids
Parallel inverters in AC microgrids can achieve accurate power sharing using droop control. However, different grid line impedances will result in different transient power and thus different energy being delivered or absorbed by the inverters during sudden load changes. This might lead the DC link voltage to rise beyond the trip limit causing the inverter to shut down, which reduces the reliability of the whole microgrid. This paper investigates the effect of the mismatch in line impedances on the stability of the DC link voltage during a sudden load changes and proposes a scheme to control the DC link voltage during disturbances. Simulation and experimental results are presented to verify the efficacy of the proposed controller.
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