Bus Voltage Control Strategy for Low Voltage DC Microgrid Based on AC Power Grid and Battery

Zhongtian Zhao, Jian Hu, Hongtao Chen
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引用次数: 11

Abstract

One of the targets for operational control of DC microgrid is to guarantee the DC bus voltage constant. Considering DC microgrid on both grid-connected and islanding operating conditions, DC bus voltage control strategy was proposed based on ac power grid and energy storage systems. Through the reasonable design of external voltage loop and internal current loop control parameters for the both AC-DC converter and the DC-DC converter, the dynamic performance of the control system was improved, and the DC bus voltage was kept constant. The validity of the bus voltage control strategy was verified by the establishing Simulink model of DC microgrid. The results were shown that the response time of the bus voltage control strategy maintained within 100ms with the load fluctuation of DC microgrid, and the maximum ripple rate was 0.8%. Therefore, the final results were shown that the bus voltage control strategy is validity.
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基于交流电网和蓄电池的低压直流微电网母线电压控制策略
保证直流母线电压恒定是直流微电网运行控制的目标之一。考虑直流微电网并网和孤岛运行两种工况,提出了基于交流电网和储能系统的直流母线电压控制策略。通过合理设计AC-DC变换器和DC-DC变换器的外电压环和内电流环控制参数,提高了控制系统的动态性能,保持了直流母线电压恒定。通过建立直流微电网的Simulink模型,验证了母线电压控制策略的有效性。结果表明,母线电压控制策略对直流微网负载波动的响应时间保持在100ms以内,最大纹波率为0.8%。因此,最终结果表明了母线电压控制策略的有效性。
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