基于加速度计的智能轮胎轮胎力估计的通用方法:分析模型和实验验证

IF 0.9 Q4 ENGINEERING, MECHANICAL
Guanqun Liang, Yan Wang, Mario A. García, Tong Zhao, Zhe Liu, M. Kaliske, Yintao Wei
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引用次数: 0

摘要

提高车辆性能和安全性的努力包括在轮胎内放置主动传感组件(例如嵌入式微传感器),从而实现智能轮胎。智能轮胎的一个应用是基于加速度计的轮胎力估计。然而,由于难以通过基于模型的理论将轮胎力与运动学信息联系起来,其发展受到限制。在本文中,提出了一种通过基于加速度计的智能轮胎估计轮胎力的通用方法,并进行了实验验证。首先,建立了一个基于微机电系统加速度计的智能轮胎原型,该原型具有车载轮胎力监测功能。然后,提出了一个滚动运动学理论模型,用于说明刚体运动和弹性变形耦合效应产生的加速度场的机理。建立了一个分析模型来实时估计垂直力。此外,采用梁模型来描述轮胎带束层的横向变形,将横向加速度和横向力直接联系起来。最后,横向力可以通过已经估计的横向加速度和垂直力来估计。基于通用分析模型,通过澄清和消除帘布层转向的影响,横向力估计方法在不同情况下,即使具有统一的系数,也能实现高精度。进行了现场测试和两个台架实验,以充分验证所开发的模型。可以得出结论,基于理论分析的估计模型通过智能轮胎硬件系统实现了令人鼓舞的轮胎力估计应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Universal Approach to Tire Forces Estimation by Accelerometer-Based Intelligent Tire: Analytical Model and Experimental Validation
Efforts to improve the performance and safety of vehicles include placing active sensing components (e.g., embedded microsensors) within tires result in intelligent tires. One application of intelligent tire is tire force estimation based on accelerometers. However, its development is limited due to the difficulty of relating the tire force to kinematical information by model-based theory. In this manuscript, a universal approach to tire forces estimation by the accelerometer-based intelligent tire is formulated and experimentally validated. First, a microelectromechanical system accelerometer-based intelligent tire prototype is established with the function of on-board monitoring of tire forces. Then, a theoretical rolling kinematics model is proposed for illustrating the mechanisms of acceleration fields, resulting from the coupling effect of rigid body motion and elastic deformation. An analytical model is formulated to estimate the vertical force in real time. Furthermore, the beam model is adopted to describe lateral deformations of the tire belt, directly linking lateral acceleration and lateral force. Finally, the lateral force can be estimated by lateral acceleration and vertical force already estimated. Based on a universal analytical model, the lateral force estimation method realizes high accuracy under different circumstances, even with unified coefficients, by clarifying and eliminating the influence of ply steer. A field test and two bench experiments have been conducted to fully validate the developed model. It can be concluded that the theoretical-analysis-based estimation model realizes an encouraging tire force estimation application with an intelligent tire hardware system.
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来源期刊
Tire Science and Technology
Tire Science and Technology ENGINEERING, MECHANICAL-
CiteScore
2.10
自引率
0.00%
发文量
11
期刊介绍: Tire Science and Technology is the world"s leading technical journal dedicated to tires. The Editor publishes original contributions that address the development and application of experimental, analytical, or computational science in which the tire figures prominently. Review papers may also be published. The journal aims to assure its readers authoritative, critically reviewed articles and the authors accessibility of their work in the permanent literature. The journal is published quarterly by the Tire Society, Inc., an Ohio not-for-profit corporation whose objective is to increase and disseminate knowledge of the science and technology of tires.
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