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Design of Grid-connected Power Control System Based on Combined Power Generation of Wind Turbine, PV and Second-used Battery

机译:基于风力涡轮机,PV和二次二手电池组合发电的网格连接电力控制系统的设计

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The installed capacity of new energy power generation in China has broken new records for many times in recent years. However, as the installed capacity of new energy takes up a larger proportion in the power grid, it also brings great challenges to the safe and stable operation of the power grid. The defects of endowment of the new energy, represented by wind turbine and photovoltaic, are randomness volatility and intermittent. In order to improve the control ability of new energy generation when natural resources change, it brings a new operation mode to combine wind turbine PV and second-used battery to improve the stability of the new energy generation to reach the same level with thermal power. At the same time, the paper studied the grid-connected control strategy based on PQ control, building the microgrid grid-connected MATLAB/Simulink simulation model based on PQ control, providing the construction method of each sub-module and the calculation and design method of related control parameters. Finally, the effectiveness of the control system design was verified by Simulink simulation.
机译:新能源发电在中国的装机容量在近几年已经打破了很多次的新记录。然而,由于安装了新能源的容量占用了电网的比重较大,也带来了对电网的安全稳定运行的巨大挑战。新能源,由风力涡轮机和光伏表示的禀赋的缺陷,是随机性的挥发性和间歇性的。为了提高新能源发电的控制能力时自然资源改变,它带来了新的操作模式,以风力涡轮机PV和第二用过的电池相结合,提高了新能源发电的稳定性达到与火力发电相同的水平。同时,本文研究了基于PQ控制电网连接的控制策略,建立一个基于PQ控制微电网电网连接的MATLAB / Simulink仿真模型,提供各个子模块的施工方法和计算和设计方法相关控制参数。最后,控制系统设计的有效性,通过Simulink仿真验证。

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