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An Optimal Control Strategy for DC Bus Voltage Regulation in Photovoltaic System with Battery Energy Storage

机译:电池储能的光伏系统直流母线电压调节的最优控制策略

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This paper presents an evaluation of an optimal DC bus voltage regulation strategy for grid-connected photovoltaic (PV) system with battery energy storage (BES). The BES is connected to the PV system DC bus using a DC/DC buck-boost converter. The converter facilitates the BES power charge/discharge to compensate for the DC bus voltage deviation during severe disturbance conditions. In this way, the regulation of DC bus voltage of the PV/BES system can be enhanced as compared to the conventional regulation that is solely based on the voltage-sourced converter (VSC). For the grid side VSC (G-VSC), two control methods, namely, the voltage-mode and current-mode controls, are applied. For control parameter optimization, the simplex optimization technique is applied for the G-VSC voltage- and current-mode controls, including the BES DC/DC buck-boost converter controllers. A new set of optimized parameters are obtained for each of the power converters for comparison purposes. The PSCAD/EMTDC-based simulation case studies are presented to evaluate the performance of the proposed optimized control scheme in comparison to the conventional methods.
机译:本文提出了一种评价电池储能(BES)的电网连接光伏(PV)系统的最佳直流总线电压调节策略。使用DC / DC降压 - 升压转换器连接到PV系统直流总线。转换器便于BES电荷/放电来补偿在严重扰动条件下的直流母线电压偏差。以这种方式,与仅基于电压 - 源转换器(VSC)的传统调节相比,可以提高PV / BES系统的直流母线电压的调节。对于电网侧VSC(G-VSC),应用两个控制方法,即电压模式和电流模式控制。对于控制参数优化,Simplex优化技术应用于G-VSC电压和电流模式控制,包括BES DC / DC降压 - 升压转换器控制器。为每个功率转换器获得新的一组优化参数,以进行比较目的。提出了基于PSCAD / EMTDC的模拟案例研究,以评估所提出的优化控制方案的性能与传统方法相比。

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