Bidirectional Power Control of Solar PV array and DABs Based Charger for Electric Vehicles

A. Pandey, A. Mittal, Shailendra Kumar
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引用次数: 2

Abstract

In the upcoming years, the electric vehicles (EVs) are turn out to be essential component of transportation. The bidirectional DC-DC converter topology along with solar PV array is proposed for the charging and discharging process of the electric vehicle (EVs) battery pack with an improved efficiency. The dual-active bridge (DAB) converter is used here which is having a unique feature like high power density, zero voltage switching and high efficiency. Moreover the phase shift modulation (PSM) technique is used in order to get the required output voltage level at the battery side. The converter consists of two full bridges working as converter/ inverter modes of operation according to the requirement. Here, there is intentionally a phase shift provided between the primary and secondary bridges of converter to control the power flow. The current control algorithm with a PSM technique is implemented to produce the switching pulses for the front-end converter that gives accurate control as compared to proportional integral (PI) controller based technique. The DAB with a high frequency isolating transformer is modelled and designed to operate in both the directions. The control algorithm and performance of the charger are evaluated by the MATLAB and Simulink based platform and correspondingly simulation results are obtained.
太阳能光伏阵列的双向功率控制及基于DABs的电动汽车充电器
在未来的几年里,电动汽车将成为交通运输的重要组成部分。为了提高电动汽车电池组的充放电效率,提出了基于太阳能光伏阵列的双向DC-DC变换器拓扑结构。本文采用双有源桥式(DAB)变换器,具有高功率密度、零电压开关和高效率等特点。此外,为了在电池侧获得所需的输出电压水平,还采用了相移调制(PSM)技术。转换器由两个全桥组成,可根据需要作为转换器/逆变器的工作模式。在这里,有意在变换器的初级桥和次级桥之间提供相移来控制潮流。与基于比例积分(PI)控制器的技术相比,采用PSM技术的电流控制算法可为前端转换器产生开关脉冲,从而实现精确的控制。对具有高频隔离变压器的DAB进行了建模和设计,使其能够在两个方向上工作。利用MATLAB和Simulink平台对充电器的控制算法和性能进行了评估,并得到了相应的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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