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Improved power management control strategy for renewable energy-based DC micro-grid with energy storage integration

机译:带有储能集成的基于可再生能源的直流微电网的改进电源管理控制策略

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摘要

This study presents an improved power management control strategy of a hybrid direct current (DC) micro-grid (MG) system consisting of photovoltaic cell, wind turbine generator, battery energy storage (BES), fuel cell (FC), and electrolyser. Based on the voltage and state of charge of BES, FC, and electrolyser, the proposed control scheme improved the dynamics of the DC-link voltage and contributes a better power management between each generation/source and load. A gain control technique is implemented in the grid-side inverter controller to regulate the modulation index and improving the voltage stability of the DC-link. Furthermore, the PI-controller gains of BES are tuned dynamically based on the deviation in voltage and its derivative using Takagi-Sugeno-fuzzy control to enhance the transient response of the voltage. For a reliable operation of the DC MG under standalone or prolonged islanding mode of operation, a priority-based load shedding algorithm is proposed for maintaining proper power coordination between different energy sources and storage devices. Owing to smoother and faster voltage response, the proposed control schemes can comply with the grid code requirements of the changing configuration of the modern renewable energy integrated DC MG. The effectiveness of the proposed control strategy is tested by comparing the existing scheme through MATLAB/SimulinkA (R).
机译:这项研究提出了一种改进的混合动力直流(DC)微电网(MG)系统的电源管理控制策略,该系统包括光伏电池,风力发电机,电池储能(BES),燃料电池(FC)和电解槽。基于BES,FC和电解槽的电压和电荷状态,所提出的控制方案改善了直流母线电压的动态特性,并有助于更好地管理每个发电/电源和负载之间的电源。在电网侧逆变器控制器中实现了一种增益控制技术,以调节调制指数并改善直流母线的电压稳定性。此外,使用Takagi-Sugeno模糊控制,可基于电压及其导数的偏差动态调整BES的PI控制器增益,以增强电压的瞬态响应。为了使DC MG在独立或长时间孤岛操作模式下可靠运行,提出了一种基于优先级的减载算法,用于维持不同能源与存储设备之间的适当功率协调。由于平滑和更快的电压响应,提出的控制方案可以满足现代可再生能源集成DC MG不断变化的配置的电网规范要求。通过比较现有的方案通过MATLAB / SimulinkA(R)来测试所提出的控制策略的有效性。

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