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New Regressors for the Direct Identification of Tire Deformation in Road Vehicles Via “In-Tire” Accelerometers

机译:通过“轮胎内”加速度计直接识别道路车辆轮胎变形的新型回归器

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The interaction between the tire and the road is crucial for determining the dynamic behavior of a road vehicle, and the road–tire contact forces are key variables in the design of traction, braking, and stability control systems. Traditionally, road–tire contact forces are indirectly estimated from vehicle-dynamics measurements (chassis accelerations, yaw-roll rates, suspension deflections, etc.). The emerging of the “smart-tire” concept (tire with embedded sensors and digital-computing capability) has made possible, in principle, a more direct estimation of contact forces. In this field—still in its infancy—the main open problems are the choice of the sensor(s) and the choice of the regressor(s) to be used for force estimation. The objective of this work is to present a new sensor–regressor choice, and to provide some preliminary experimental results, which confirm the validity of this choice. The idea is to use a wheel encoder and an accelerometer mounted directly in the tire. The measurement of the in-tire acceleration is transmitted through a wireless channel. The key innovative concept is to use the phase shift between the wheel encoder and the pulse-like signals provided by the accelerometer as the main regressor for force estimation.
机译:轮胎与道路之间的相互作用对于确定道路车辆的动态性能至关重要,道路轮胎的接触力是牵引力,制动和稳定性控制系统设计中的关键变量。传统上,通过车辆动力学测量(底盘加速度,偏航角速度,悬架挠度等)间接估算道路轮胎的接触力。原则上,“智能轮胎”概念(带有嵌入式传感器和数字计算功能的轮胎)的出现使接触力的更直接估算成为可能。在该领域(仍处于起步阶段),主要的开放问题是传感器的选择和用于力估计的回归器的选择。这项工作的目的是提出一种新的传感器-回归器选择,并提供一些初步的实验结果,这些结果证实了这种选择的有效性。这个想法是使用直接安装在轮胎中的车轮编码器和加速度计。轮胎内加速度的测量通过无线信道发送。创新的关键概念是使用车轮编码器和加速度计提供的脉冲状信号之间的相移作为力估计的主要回归指标。

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