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A New Power Flow Control Method for Energy Storage Systems in Microgrids (MGs)

机译:微电网中的能量存储系统的新功率流量控制方法(MGS)

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This paper introduces a new power flow control method for the energy storage systems used in DC microgrids (MGs). The proposed control method is an adaptive droop control-based method that keeps the DC-bus voltage in a predefined and desired range. In the islanded mode of operation, tightly regulating the bus voltage is very challenging. The proposed control technique utilizes a nonlinear droop profile with four adaptive parameters, which are able to tightly regulate the bus voltage during various changes in loads/sources within a DC MG. In addition, determination of the adaptive parameters are performed by using a nonlinear optimization method. The sequential quadratic programming (SQP) optimization considers both the state of charge (SOC) of the battery and the DC MG voltage to make the control system more reliable and efficient. Simulation and experimental results verify the feasibility of the proposed approach and demonstrate its superior performance in comparison with the conventional controllers.
机译:本文介绍了一种新的电力流量控制方法,用于DC微电网中使用的能量存储系统(MGS)。所提出的控制方法是一种基于自适应的下垂控制的方法,其将直流母线电压保持在预定义和期望的范围内。在岛屿的操作模式下,严格调节总线电压非常具有挑战性。所提出的控制技术利用具有四个自适应参数的非线性下垂轮廓,其能够在DC MG内的负载/源的各种变化期间能够紧密地调节总线电压。另外,通过使用非线性优化方法来执行自适应参数的确定。顺序二次编程(SQP)优化考虑了电池的充电状态(SOC)和DC MG电压,使控制系统更可靠且有效。仿真和实验结果验证了所提出的方法的可行性,并展示与传统控制器相比的卓越性能。

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