乘用车线控制动系统:结构、控制、关键技术及其在x线控底盘中的应用综述

IF 15 1区 工程技术 Q1 ENERGY & FUELS
Lei Zhang , Qi Wang , Jun Chen , Zhen-Po Wang , Shao-Hua Li
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引用次数: 0

摘要

为了提高运输系统的效率和安全性,减少排放,电气化、网络化和智能化是现代汽车工业的主要发展趋势。线控制动系统作为乘用车线控底盘的重要组成部分,在提高制动能效、安全性和乘坐舒适性方面发挥着重要作用。本文系统、全面地综述了BBW及其相关技术在乘用车中的应用。首先,详细介绍了主要BBW系统的架构和工作原理。然后,阐述了BBW系统的控制策略。特别介绍了涉及bbw的主动安全控制。最后,对研究面临的挑战和未来的研究方向进行了展望。BBW的集成化设计是一个重要的发展方向,但除电液系统外,其他BBW系统仍需解决一些关键技术难题。此外,x线传底盘的高效协调控制仍然是一个开放的话题。其中,BBW在x线传机箱中的应用是一个研究热点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brake-by-wire system for passenger cars: A review of structure, control, key technologies, and application in X-by-wire chassis

Electrification, networking and intelligence are the major development trends of the modern automobile industry for improving efficiency and safety and reducing emissions of the transport system. As an integral component of a wire-controlled chassis in passenger cars, brake-by-wire (BBW) system plays a key role in improving braking energy efficiency, safety, and ride comfort. This paper presents a systematic and complete review on BBW and its related technologies in passenger car applications. First, the architectures and working principles of major BBW systems are covered in details. Then, state-of-art control strategies for BBW systems are expounded. In particular, BBW-involved active safety control are presented. Finally, the remaining challenges and future research directions are discussed. The integrated design of BBW is a major development direction while other BBW systems except the Electro-Hydraulic System still need to solve some key technological challenges. Besides, efficient coordinated control of the X-by-wire chassis remains an open topic. In particular, the application of BBW in the X-by-wire chassis is a research hotspot.

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来源期刊
Etransportation
Etransportation Engineering-Automotive Engineering
CiteScore
19.80
自引率
12.60%
发文量
57
审稿时长
39 days
期刊介绍: eTransportation is a scholarly journal that aims to advance knowledge in the field of electric transportation. It focuses on all modes of transportation that utilize electricity as their primary source of energy, including electric vehicles, trains, ships, and aircraft. The journal covers all stages of research, development, and testing of new technologies, systems, and devices related to electrical transportation. The journal welcomes the use of simulation and analysis tools at the system, transport, or device level. Its primary emphasis is on the study of the electrical and electronic aspects of transportation systems. However, it also considers research on mechanical parts or subsystems of vehicles if there is a clear interaction with electrical or electronic equipment. Please note that this journal excludes other aspects such as sociological, political, regulatory, or environmental factors from its scope.
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