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A Review and Modeling of Different Droop Control Based Methods for Battery State of the Charge Balancing in DC Microgrids

机译:基于微分控制的直流微电网电荷平衡电池状态方法的回顾与建模

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Nowadays, DC microgrids by linking DC sources such as renewable resources directly to the DC loads and offering higher efficiency due to the elimination of conversion stages are gaining more and more popularity. In DC microgrids with renewable resources, there are stochastic behavior and uncertainties. Thus, energy storage use is unavoidable. Droop control as a well known method is used as the basis of the power sharing among different parallel voltage sources and battery energy storage systems (BESSs). In order to extend the lifetime of BESSs and avoid the overuse of a certain battery, the State of the Charge (SoC) of BESSs should be balanced. This paper presents a review on three different droop control based methods for balancing SoCs of different BESSs in DC microgrids. Moreover, the paper proposes a new droop control method for SoC balancing to overcome the drawbacks of the mentioned methods. The mathematical model of these different methods are derived using small signal state space modeling for a Photovoltaic (PV) grid-interactive DC microgrid consisting of two BESSs. Then, a comparison study has been performed for the mentioned four methods using MATLAB/Simulink.
机译:如今,通过将直流资源(例如可再生资源)直接连接到直流负载,并由于消除了转换阶段而提供更高的效率,直流微电网越来越受到欢迎。在具有可再生资源的直流微电网中,存在随机行为和不确定性。因此,不可避免地要使用能量存储。下垂控制作为一种众所周知的方法,被用作不同并联电压源和电池储能系统(BESS)之间功率共享的基础。为了延长BESS的寿命并避免过度使用某些电池,应该平衡BESS的充电状态(SoC)。本文介绍了三种基于下垂控制的方法,用于平衡DC微电网中不同BESS的SoC。此外,本文提出了一种新的用于SoC平衡的下垂控制方法,以克服上述方法的缺点。这些不同方法的数学模型是使用小信号状态空间模型导出的,该模型用于由两个BESS组成的光伏(PV)电网交互式DC微电网。然后,使用MATLAB / Simulink对上述四种方法进行了比较研究。

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