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Technical Review: Indirect Tire Pressure Monitoring Systems and Tire Vibrations

机译:技术综述:间接轮胎压力监测系统和轮胎振动

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摘要

Indirect tire pressure monitoring systems (ITPMSs) have been an active area of research for the past 2 decades. Researchers worldwide have strived to develop estimation techniques for the detection of the change in tire pressure by using the vibration information present in the speed signal. Different groups have used a torsional vibration model for the tire, owing to its torsional stiffness and rotational moment of inertia. The standard antilock braking system (ABS) speed sensor signal is analyzed for these vibrations. Different estimation algorithms try to detect the change in this vibration frequency, which indicates the change in the torsional stiffness of the tire as a result of variation in the pressure. Tire vibrations have been studied in great detail for the past 5 decades, and there are various models of tire vibrations available in the literature. These models range from physics-based analytical models to finite element models (FEMs). Analytical models take benefit from the mathematics developed for rotating elastic thin shells and plates, whereas FEMs use simulation tools to develop vibration models of the tire. A detailed literature survey of ITPMSs and lire vibration models reveals that there is no correlation between the vibrations detected in the speed signal and the vibrations predicted in the tire vibration models. Researchers have developed tire vibration models that do not take into consideration the effects of vibrations on the speed signal; although, to the best of our knowledge, signal processing and estimation experts who have developed methods for ITPMSs have not validated the true source of observed vibrations in the speed signal and could not present a viable theoretical explanation. In this review, a comprehensive study of the ITPMS techniques and tire vibration models is presented, with an aim to find a correlation between them. The review begins with a brief introduction to the topic followed by state of the art, then a detailed review of ITPMSs and the methods for their realizations in the automotive industry. Finally, tire vibration models are presented in detail, and possible links between vibration models and ITPMS vibrations are sorted.
机译:间接轮胎压力监测系统(ITPMSS)是过去2年的一直是一个活跃的研究领域。全球的研究人员通过使用速度信号中存在的振动信息,开发用于检测轮胎压力变化的估计技术。由于其扭转刚度和旋转力矩的惯性,不同的组使用了轮胎的扭转振动模型。分析了标准的防姑式制动系统(ABS)速度传感器信号以进行这些振动。不同的估计算法尝试检测该振动频率的变化,这表示由于压力变化而导致轮胎的扭转刚度的变化。过去5世纪数十年来研究了轮胎振动,并且文献中有各种型号的轮胎振动。这些模型范围从基于物理的分析模型到有限元模型(FEMS)。分析模型从开发用于旋转弹性薄壳和板的数学中受益,而FEMS使用仿真工具来开发轮胎的振动模型。 ITPMS和LIRE振动模型的详细文献调查显示,在速度信号中检测到的振动与轮胎振动模型中预测的振动之间没有相关性。研究人员开发了轮胎振动模型,不考虑振动对速度信号的影响;虽然我们的知识中,已经开发了ITPMS方法的信号处理和估计专家尚未验证速度信号中观察到的振动的真实源,并且无法呈现可行的理论解释。在本文中,提出了对ITPMS技术和轮胎振动模型的全面研究,目的是在它们之间找到相关性。审查始于简要介绍了本领域的主题,然后对ITPMSS的详细审查以及在汽车行业中的实现方法。最后,详细介绍了轮胎振动模型,对振动模型和ITPMS振动之间的可能链接进行了分类。

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