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用于电动汽车充电的高效双向DAB变换器的设计与分析

Design and analysis of a high-efficiency bi-directional DAB converter for EV charging.

作者信息

Rajender Jatoth, Dubey Manisha, Kumar Yogendra, Somanna Banothu, Alshareef Muhannad, Namomsa Borchala, Ghoneim Sherif S M, Abdelwahab Saad A Mohamed

机构信息

Department of Electrical Engineering, Maulana Azad National Institute of Technology, Bhopal, Madhya Pradesh, India.

Department of Electrical Engineering, College of Engineering and Computing in Al-Qunfudhah, Umm Al-Qura University, Mecca, Saudi Arabia.

出版信息

Sci Rep. 2024 Oct 10;14(1):23764. doi: 10.1038/s41598-024-71982-3.

Abstract

The escalating demand for electric vehicles (EVs) arises from apprehensions regarding fossil fuel depletion and the ecological repercussions of conventional combustion engines, propelling the transition towards environmentally sustainable alternatives. EVs are conventionally comprised of a powertrain, battery management system, and communication infrastructure, with the battery playing a pivotal role. Achieving an efficient EV battery charger necessitates the implementation of a proficient charging algorithm and a high-power converter capable of adeptly regulating battery parameters. Among the array of available options, a bi-directional DC/DC converter is often employed for this purpose. This study predominantly focuses on the Bi-Directional Dual Active Bridge Converter with Single-Phase Shift Control. It is renowned for attaining a broad voltage range through transformer turn ratio adjustments. Its controllable parameters, such as phase shift ratio and duty cycle, bolster its versatility. Moreover, due to its input-output isolation and minimal passive elements, this converter exhibits superior efficiency due to its soft-switching capabilities. The analytical framework encompasses steady-state and dynamic assessments, small-signal modeling, and system transfer function analysis, all of which contribute to formulating an optimized controller design. Additionally, the study conducts simulations of various battery charging techniques, including constant current (CC), constant voltage (CV), and CCCV mode, employing a 1.5 kW Dual Active Bridge DAB-based charger through MATLAB/SIMULINK. Furthermore, voltage mode control simulations for a 5 kW DAB converter augment the study's insights into effective EV charging strategies.

摘要

对电动汽车(EV)需求的不断增长源于对化石燃料枯竭以及传统内燃机对生态影响的担忧,推动了向环境可持续替代方案的转变。传统上,电动汽车由动力总成、电池管理系统和通信基础设施组成,其中电池起着关键作用。要实现高效的电动汽车电池充电器,需要实施一种熟练的充电算法和一个能够熟练调节电池参数的高功率转换器。在一系列可用选项中,双向DC/DC转换器常为此目的而采用。本研究主要关注具有单相移控制的双向双有源桥转换器。它以通过变压器匝数比调整实现宽电压范围而闻名。其可控参数,如相移比和占空比,增强了其通用性。此外,由于其输入输出隔离和最少的无源元件,该转换器因其软开关能力而具有卓越的效率。分析框架包括稳态和动态评估、小信号建模以及系统传递函数分析,所有这些都有助于制定优化的控制器设计。此外,该研究通过MATLAB/SIMULINK对各种电池充电技术进行了仿真,包括恒流(CC)、恒压(CV)和恒流恒压(CCCV)模式,采用了一个基于1.5千瓦双有源桥DAB的充电器。此外,对一个5千瓦DAB转换器的电压模式控制仿真增强了该研究对有效电动汽车充电策略的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4a6/11467318/bd759988a9af/41598_2024_71982_Fig1_HTML.jpg

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