基于智能电动汽车线控制动系统的助力电机设计方法

Bumin Meng , Zhengzhao Zhou , Congyue Zhang , Feifan Yang
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引用次数: 0

摘要

线控制动系统是智能电动汽车的重要组成部分,它决定着汽车制动的安全性和回收效率。为了设计一种安全高效的增压电机,本文讨论了BBW系统的增压电机设计。通过对比分析、实验仿真和评价论证,全面阐述了线控制动系统助力电机的设计方案。首先,讨论了BBW系统的主流结构及其在辅助电机中面临的主要挑战。其次,通过对不同类型和结构的电机的比较,确定了适合升压器电机系统特点的电机本体和控制系统方案。然后,通过ansoft和matlab的仿真分析,提出了电机的优化方案和性能改进方案。此外,通过一套增压电机系统的实际设计,验证了电机设计的安全性和有效性,并对涉及功能安全的问题进行了讨论。最后,针对仿真和实验中存在的问题,指出了改进现有技术的一些重要对策和深入研究的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A design method for booster motor of brake-by-wire system based on intelligent electric vehicle

A design method for booster motor of brake-by-wire system based on intelligent electric vehicle

The brake-by-wire (BBW) system is an essential part of the intelligent electric vehicle, which is determination of the braking safety and recovery efficiency. To design a safe and efficient booster motor, the design of booster motor for BBW system is discussed in this paper. Through comparative analysis, experimental simulation and assessment argument, the scheme of designing a booster motor for brake-by-wire system is completely described. First, the mainstream structure of the BBW system and the main challenges it faces in the assisted motor are discussed. Second, comparing the motors of different types and structures, the motor body and control system scheme suitable for the characteristics of the booster motor system are determined. Then, through the simulation analysis of the ansoft and matlab, the optimization scheme of the motor and performance improvement are proposed. Further, through the actual design of a set of the booster motor system, the safe and efficient motor designing are verified, and the problems involving functional safety are discussed. Finally, focus on the problem while simulation and experiment, some important countermeasures to improve current technology and prospect of in-depth study are pointed out.

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