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Secondary Control Method for Standalone DC Microgrid with Improved Voltage Regulation, Load Sharing, and Line Loss

机译:具有改进的电压调节,负载共享和线路损耗的独立DC微电网的二次控制方法

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Conventional droop control in DC Microgrid with secondary control strategies are proposed in the existing literature. If droop is the only control variable, a trade-off between voltage regulation and proportional current sharing exists. To overcome this, a voltage shift is also introduced to achieve low voltage regulation and proportional current sharing simultaneously. However, line losses need to be reduced along with these. We propose an online algorithm which finds an optimal voltage shift while keeping the droops constant. The cost function used for this optimization accounts for voltage regulation, ideal current based proportional current sharing error and line losses. It is assumed that each distributed energy resource receives information of droop gains, output current of other distributed energy resources and DC bus voltage to compute the optimal voltage shift. Detailed analysis and design procedures are explained, and MATLAB simulations are performed for 400 V DC microgrid system to justify the effectiveness of the proposed control method.
机译:在现有文献中提出了具有二次控制策略的DC微电网中的常规下垂控制。如果DROOP是唯一的控制变量,则存在电压调节和比例电流共享之间的折衷。为了克服这一点,还引入了电压移位以同时实现低压调节和比例电流共享。但是,需要减少线路损耗以及这些。我们提出了一种在线算法,该算法在保持DROOPS恒定的同时找到最佳电压偏移。用于该优化的成本函数用于电压调节,理想的基于电流的比例电流共享误差和线路损耗。假设每个分布的能量资源接收下垂收益的信息,其他分布式能量资源的输出电流和DC总线电压以计算最佳电压偏移。解释了详细的分析和设计程序,对400 V DC微电网进行了MATLAB模拟,以证明所提出的控制方法的有效性。

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