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Voltage Control of Bipolar DC Distribution Systems Considering the Characteristics of Constant Power Load: A Load-Side Solution

机译:考虑恒功率负载特性的双极性直流配电系统的电压控制:负载侧解决方案

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Employing bipolar DC distribution systems introduces the possibility of unbalanced voltage. This increases voltage deviations and power losses at each node due to the presence of the neutral line current. This study proposes a method of mitigating unbalanced voltage caused by constant power loads (CPLs) through DC electric springs (DC-ESs). In the case of the small-signal analysis of CPLs, a linearized model is utilized. On this basis, the coupling relations between positive and negative pole voltages are analyzed. After DC-ESs are introduced, the positive and negative pole voltages and output voltages ofDC-ESs are found to be closely related, thereby deteriorating the dynamic performance of the control system and increasing its complexity. Therefore, a feedforward decoupling block diagram is introduced based on the small-signal model analysis of DC-ESs in a single node of the bipolar DC system. This can greatly enhance the rapidity and anti-interference performances of the control system. Simulation and experimental results of the unbalanced-voltage suppression in the bipolar DC system are used to verify the effectiveness of the proposed scheme.
机译:使用双极性直流配电系统会导致电压不平衡的可能性。由于存在中性线电流,这会增加每个节点的电压偏差和功率损耗。这项研究提出了一种通过直流电弹簧(DC-ES)缓解恒定功率负载(CPL)引起的不平衡电压的方法。在对CPL进行小信号分析的情况下,将使用线性化模型。在此基础上,分析了正负电压之间的耦合关系。引入DC-ES后,发现DC-ES的正负电压与输出电压密切相关,从而降低了控制系统的动态性能并增加了其复杂性。因此,基于双极直流系统单节点中DC-ES的小信号模型分析,引入了前馈去耦框图。这样可以大大提高控制系统的速度和抗干扰性能。利用双极性直流系统中不平衡电压抑制的仿真和实验结果验证了该方案的有效性。

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