Design of the Steering Feedback Controller of a Steer-by-Wire System Using Admittance Model

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Hyungjeen Choi, Seibum Choi
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Abstract

The steer-by-wire (SbW) system is a promising system in the realm of automotive engineering. It substitutes the mechanical connection between the steering wheel and the front road wheels with an electronic signal-based functional connection. The SbW system offers several advantages over conventional steering systems, including weight reduction, reduced vibration, and enhanced steering functionality configuration. However, the absence of a mechanical linkage in the SbW system gives rise to certain challenges. The SbW system requires endowing adequate steering feel such as damping and reaction force using feedback motor, and the road wheel needs robust control of pinion motor for normal load variation by passengers and self-aligning torque as external disturbance. The SbW system is composed of the steering feedback module (SFM) and the road wheel module (RWM). This paper proposes a control approach to generate steering feel for SFM, in which steering feel is generated using an admittance model based on velocity control. A disturbance observer is applied to ensure robustness of velocity control. The steering wheel torque versus steering wheel angle (T–A) curve is used to analyze steering feel characteristic and evaluate steering feel. The proposed steering system is validated through experiments that confirm its ability to provide satisfactory steering feel for vehicles. This work may offer a novel solution for the design of advanced steering systems in the field for the future mobility such as an autonomous driving.

Abstract Image

利用导纳模型设计线控转向系统的转向反馈控制器
线控转向系统(SbW)是汽车工程领域中一种前景广阔的系统。它以基于电子信号的功能连接取代了方向盘和前轮之间的机械连接。与传统转向系统相比,SbW 系统具有多项优势,包括减轻重量、减少振动和增强转向功能配置。然而,由于 SbW 系统中没有机械连杆,因此也带来了一些挑战。SbW 系统需要利用反馈电机赋予足够的转向感,如阻尼和反作用力,同时路轮需要对小齿轮电机进行稳健控制,以应对乘客的正常负载变化和外部干扰带来的自对准扭矩。SbW 系统由转向反馈模块(SFM)和路轮模块(RWM)组成。本文提出了一种为 SFM 生成转向感的控制方法,其中转向感是使用基于速度控制的导纳模型生成的。为确保速度控制的鲁棒性,采用了扰动观测器。方向盘扭矩与方向盘角度(T-A)曲线用于分析转向感特征和评估转向感。通过实验验证了所提出的转向系统,证实其能够为车辆提供令人满意的转向感觉。这项工作可为未来自动驾驶等移动领域的先进转向系统设计提供新颖的解决方案。
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来源期刊
International Journal of Automotive Technology
International Journal of Automotive Technology 工程技术-工程:机械
CiteScore
3.10
自引率
12.50%
发文量
129
审稿时长
6 months
期刊介绍: The International Journal of Automotive Technology has as its objective the publication and dissemination of original research in all fields of AUTOMOTIVE TECHNOLOGY, SCIENCE and ENGINEERING. It fosters thus the exchange of ideas among researchers in different parts of the world and also among researchers who emphasize different aspects of the foundations and applications of the field. Standing as it does at the cross-roads of Physics, Chemistry, Mechanics, Engineering Design and Materials Sciences, AUTOMOTIVE TECHNOLOGY is experiencing considerable growth as a result of recent technological advances. The Journal, by providing an international medium of communication, is encouraging this growth and is encompassing all aspects of the field from thermal engineering, flow analysis, structural analysis, modal analysis, control, vehicular electronics, mechatronis, electro-mechanical engineering, optimum design methods, ITS, and recycling. Interest extends from the basic science to technology applications with analytical, experimental and numerical studies. The emphasis is placed on contributions that appear to be of permanent interest to research workers and engineers in the field. If furthering knowledge in the area of principal concern of the Journal, papers of primary interest to the innovative disciplines of AUTOMOTIVE TECHNOLOGY, SCIENCE and ENGINEERING may be published. Papers that are merely illustrations of established principles and procedures, even though possibly containing new numerical or experimental data, will generally not be published. When outstanding advances are made in existing areas or when new areas have been developed to a definitive stage, special review articles will be considered by the editors. No length limitations for contributions are set, but only concisely written papers are published. Brief articles are considered on the basis of technical merit.
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