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Current PI Control for PV Systems in DC Microgrids: A PBC Design

机译:DC Microgrids中PV系统的电流PI控制:PBC设计

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This paper proposes a passive PI control for applications of photovoltaic (PV) systems integrated with boost DC–DC converters. The proposed controller guarantees asymptotically stability in closed–loop for the boost DC–DC converter using Lyapunov theory. In addition, the proposed controller is robust to parametric uncertainties and unmodeled dynamics since it does not depend on the system parameters. The current control mode is selected for the PV system since it is modeled as a current source, where its current is computed as a function of solar irradiance and the cells temperature. The current reference is calculated to a perturbing and observe MPPT algorithm with a current-mode controlled to extract the maximum power available in this solar source. The PI-PBC applied to the boost DC–DC converter is compared with a classical PI approach for validating its effectiveness and the robustness. Simulation results are performed in MATLAB/Simulink with a switching frequency of 5 kHz.
机译:本文提出了一种无源PI控制,用于与升压DC-DC转换器集成的光伏(PV)系统的应用。所提出的控制器可确保使用Lyapunov理论的Boost DC-DC转换器的闭环中的渐近稳定性。此外,所提出的控制器对参数不确定性和未拼接的动态非常强大,因为它不依赖于系统参数。为PV系统选择电流控制模式,因为它被建模为电流源,其中电流被计算为太阳辐照度和电池温度。将当前参考值计算为扰动并观察MPPT算法,通过控制电流模式,以提取该太阳能源中可用的最大功率。将施加到升压DC-DC转换器的PI-PBC与经典PI方法进行比较,用于验证其有效性和鲁棒性。模拟结果在MATLAB / SIMULINK中执行,开关频率为5 kHz。

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