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Unbalanced Voltage Suppression in a Bipolar DC Distribution Network Based on DC Electric Springs

机译:基于直流电弹簧的双极性直流配电网中的不平衡电压抑制

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In this paper, a method is proposed to mitigate unbalanced voltage and reduce power losses due to neutral line current in a bipolar direct current (DC) distribution network by introducing a DC electric spring (DC-ES). The coupling relationship between positive and negative pole voltages are investigated given the resistance of neutral line in the bipolar DC distribution network. The coupling matrixes of the positive and negative pole voltages and the DC-ES output voltages are deduced. And this matrixes demonstrate that the DC-ES control system is composed of double inputs of pole voltages and double outputs of DC-ES voltages. The small-signal model of the bipolar DC distribution network with DC-ESs is derived further. Subsequently, the control system with double inputs and outputs is transformed into two independent control systems by introducing the decoupling control variables, thereby increasing its rapidity and anti-interference performance significantly. The proposed unbalanced voltage suppression method and decoupling control of DC-ESs are validated by simulations and experiments.
机译:本文提出了一种通过引入直流电弹簧(DC-ES)减轻双极直流(DC)配电网络中的中性线电流引起的电压不平衡并降低功率损耗的方法。考虑到双极直流配电网中性线的电阻,研究了正负电压之间的耦合关系。推导了正极和负极电压与DC-ES输出电压的耦合矩阵。该矩阵表明,DC-ES控制系统由极电压的双输入和DC-ES电压的双输出组成。进一步推导了具有DC-ES的双极直流配电网的小信号模型。随后,通过引入解耦控制变量将具有双重输入和输出的控制系统转换为两个独立的控制系统,从而显着提高其速度和抗干扰性能。通过仿真和实验验证了所提出的不平衡电压抑制方法和DC-ES的解耦控制。

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