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Distributed adaptive droop control for DC distribution systems

机译:直流配电系统的分布式自适应下垂控制

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摘要

Summary form only given: A distributed-adaptive droop mechanism is proposed for secondary/primary control of dc microgrids. The conventional secondary control that adjusts the voltage set point for the local droop mechanism is replaced by a voltage regulator. A current regulator is also added to fine-tune the droop coefficient for different loading conditions. The voltage regulator uses an observer that processes neighbors' data to estimate the average voltage across the microgrid. This estimation is further used to generate a voltage correction term to adjust the local voltage set point. The current regulator compares the local per-unit current of each converter with the neighbors' on a communication graph and, accordingly, provides an impedance correction term. This term is then used to update the droop coefficient and synchronize per-unit currents or, equivalently, provide proportional load sharing. The proposed controller precisely accounts for the transmission/distribution line impedances. The controller on each converter exchanges data with only its neighbor converters on a sparse communication graph spanned across the microgrid. Global dynamic model of the microgrid is derived with the proposed controller engaged. A low-voltage dc microgrid prototype is used to verify the controller performance, link-failure resiliency, and the plug-and-play capability.
机译:仅给出摘要形式:提出了一种分布式自适应下垂机制,用于直流微电网的次级/初级控制。调节局部下垂机构的电压设定点的常规辅助控制装置被调压器代替。还添加了一个电流调节器,以针对不同的负载条件微调下垂系数。调压器使用观察者来处理邻居的数据,以估计微电网上的平均电压。该估计还用于生成电压校正项以调整局部电压设定点。电流调节器将每个转换器的本地单位电流与通信图上的邻居的电流进行比较,并因此提供阻抗校正项。然后,该术语用于更新下垂系数并同步每单位电流,或者等效地提供成比例的负载分配。所提出的控制器精确地考虑了传输/分配线的阻抗。每个转换器上的控制器仅与跨微电网的稀疏通信图上的其相邻转换器交换数据。在提出的控制器参与下,推导了微电网的全局动态模型。低压直流微电网原型机用于验证控制器性能,链路故障弹性和即插即用功能。

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