A Non-Isolated Multiport Converter for E-Vehicle Applications

Muruga Ramya G, K. Baskaran
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Abstract

The necessity to reduce the risks in the environmental pollution has paved way for the options that help in minimizing it. Electric vehicle is one such option and the most evolving means in this field. The EV system in order to achieve a high peak requires multiple sources to be integration. So, a bidirectional buck boost DC to DC converter with four port is realized in this research for integration of many sources instead of using dedicated converter. This non isolated multi-port converter with compact size, minimum number of components and simple controlstructure enhances converter reliability and makes it more economical. This converter has the ability to accommodate energy sources with varying current and voltage characteristics. This converter has two input ports the DC supply & the Batteryas well as two output ports motor and auxiliary loads. This multi-port converter exhibits bidirectional power flow capability during the regenerative braking of an E-Vehicle. The converter employs three switches to control the flow of power. The article aims in studying the performance of the controller structure used in regulating the flow in power of energy sources and analyses its dynamic as well as the steady state characteristics. The design is validated using MATLAB Simulink tool to ensure its performance.
用于电动汽车应用的非隔离多端口转换器
减少环境污染风险的必要性为有助于减少环境污染的选择铺平了道路。电动汽车就是其中一种选择,也是该领域发展最快的手段。电动汽车系统为了达到较高的峰值,需要对多个电源进行集成。因此,本研究实现了一种双向降压四端口DC - DC变换器,以实现多源集成,而不是使用专用变换器。该非隔离多端口变换器具有体积小、元件数量少、控制结构简单等特点,提高了变换器的可靠性和经济性。该转换器具有适应具有不同电流和电压特性的能源的能力。该转换器有两个输入端口直流电源和电池以及两个输出端口电机和辅助负载。该多端口转换器在电动汽车再生制动过程中表现出双向功率流能力。转换器采用三个开关来控制功率的流动。本文旨在研究用于调节能源功率流的控制器结构的性能,并分析其动态和稳态特性。利用MATLAB Simulink工具对设计进行了验证,保证了设计的性能。
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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