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An Energy Storage Performance Improvement Model for Grid-Connected Wind-Solar Hybrid Energy Storage System

机译:并网风光互补储能系统的储能性能提升模型

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摘要

This study introduces a supercapacitor hybrid energy storage system in a wind-solar hybrid power generation system, which can remarkably increase the energy storage capacity and output power of the system. In the specific solution, this study combines the distributed power generation system and the hybrid energy storage system, while using the static reactive power compensation system and the conductance-fuzzy dual-mode control method to increase output power in stages. At the same time, the optimal configuration model of the wind-solar hybrid power generation system is established using MATLAB/Simulink software. The output power of the microgrid to the wind-photovoltaic hybrid power generation system is calculated by simulation, and the optimization process of each component of the system is simulated. This study mainly uses the static reactive power compensation system and the conductance-fuzzy dual-mode control method to optimize the wind-solar hybrid power generation system. Using MATLAB software simulation verifies the feasibility and rationality of the optimal configuration of the system.
机译:该文在风光互补发电系统中引入了一种超级电容混合储能系统,可以显著提高系统的储能容量和输出功率。在具体方案中,该研究将分布式发电系统与混合储能系统相结合,同时采用静态无功补偿系统和电导模糊双模控制方法,分阶段提高输出功率。同时,利用MATLAB/Simulink软件建立了风光互补发电系统的优化配置模型。通过仿真计算微电网对风光互补发电系统的输出功率,并模拟系统各部件的优化过程。本研究主要采用静态无功补偿系统和电导模糊双模控制方法对风光混合发电系统进行优化。利用MATLAB软件仿真验证了系统最优配置的可行性和合理性。

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