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A novel control method for islanding mode microgrid with unbalanced load

机译:负荷不平衡的孤岛微电网控制新方法

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Single-phase load in microgrid brings about negative sequence voltage and current, deteriorating the stability of microgrid system. The difference of micro-source(MS) parameters influences the sharing negative current and reduces the reliability of MS. Negative sequence voltage reduces power quality and stability of microgrid. In this paper, a comprehensive control method is proposed to improve the power stability of unbalanced load microgrid. The adjustable negative sequence virtual impedance is included in the method, which is regulated by the negative current amplitude of MS. Through the design of adjustable negative sequence virtual impedance, the accurate negative current sharing is realized under islanding mode. The effect of negative sequence virtual impedance character on unbalanced voltage factor of Point of Common Coupling (PCC) is also analyzed. In order to re duce PCC unbalanced voltage factor, a kind of secondary voltage compensation method is proposed in this paper. Experimental results validate the effectiveness of the pro posed methods.
机译:微电网中的单相负载会导致负序电压和电流,从而降低微电网系统的稳定性。微源(MS)参数的差异影响共享负电流并降低了MS的可靠性。负序电压会降低电能质量和微电网的稳定性。本文提出了一种综合控制方法来提高不平衡负载微电网的功率稳定性。该方法包括可调节的负序虚拟阻抗,该阻抗由MS的负电流幅度调节。通过可调负序虚拟阻抗的设计,在孤岛模式下实现了精确的负电流共享。还分析了负序虚拟阻抗特性对公共耦合点(PCC)不平衡电压因数的影响。为了降低PCC的不平衡电压系数,提出了一种二次电压补偿方法。实验结果验证了所提出方法的有效性。

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