Design of Solar and Battery Hybrid Electric Vehicle Charging Station

A. Kamali, V. Prasanna Moorthy
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引用次数: 8

Abstract

Microgrids have emerged as a new way to integrate and use large-scale distributed power to provide electricity to isolated locations, such as islands and villages. A utility engineering microgrid structure is designed to provide fast response and efficient operation by analyzing hybrid power systems and fuzzy-PI-based control techniques. This project aims to design a solar photovoltaic (PV)-battery-diesel generator-based hybrid power system employing a Sepic converter. The Perturb and Observe algorithm is used for maximum power extraction from solar panel. A lithium-ion battery is utilized as a storage battery in this system, which may be charged by the PV source. When the storage battery is depleted and PV generation is unavailable, the charging station uses the grid and a diesel generator. The generated voltage is synchronised at the Point of Common Coupling (PCC) to achieve continuous charging. The simulation is done in MATLAB/Simulink. The simulation output of using the PI control strategy is compared with the fuzzy-PI control strategy. This demonstrates the efficacy of the fuzzy-PI control method.
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太阳能与电池混合动力汽车充电站设计
微电网作为一种整合和使用大规模分布式电力的新方式出现,为岛屿和村庄等偏远地区提供电力。通过对混合动力系统的分析和基于模糊pi的控制技术,设计了一种快速响应和高效运行的公用事业工程微网结构。该项目旨在设计一个太阳能光伏(PV)-电池-柴油发电机为基础的混合动力系统,采用Sepic转换器。Perturb和Observe算法用于太阳能电池板的最大功率提取。在该系统中使用锂离子电池作为储能电池,可由光伏电源对其充电。当蓄电池电量耗尽,光伏发电无法使用时,充电站使用电网和柴油发电机。产生的电压在公共耦合点(PCC)同步,以实现连续充电。仿真在MATLAB/Simulink中完成。采用PI控制策略的仿真输出与模糊PI控制策略的仿真输出进行了比较。验证了模糊pi控制方法的有效性。
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