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Estimation of the Tire Contact Patch Length and Normal Load Using Intelligent Tires and Its Application in Small Ground Robot to Estimate the Tire-Road Friction

机译:利用智能轮胎估算轮胎接触面长度和正常负荷,并在小型地面机器人中估算轮胎-路面摩擦力

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摘要

Tire-road friction estimation is one of the most popular problems for the tire and vehicle industry. Accurate estimation of the tire-road friction leads to better performance of the traction and antilock braking system controllers, which reduces the number of accidents. Several researchers have worked in the field of friction estimation, and many tire models have been developed to predict the tire-road friction. In this article, an intelligent tire, which has an embedded accelerometer placed on the inner liner of the tire, is used to estimate the tire contact patch length parameter and normal load. To accomplish this, first, an existing tire testing trailer equipped with a force hub to measure tire forces and moments, a high-accuracy encoder to measure the angular velocity of the wheel, and VBOX, which is a global positioning system-based device, to estimate the longitudinal speed of the trailer was used. As a practical application for the normal load algorithm, a wheeled ground robot, which is equipped with several sensors, including an accelerometer and a flexible strain sensor inside the tire (used for terrain identification purposes), was designed and built. A set of algorithms was developed and used with the test data that were collected with both the trailer and the robot, and the contact patch length and the normal load were estimated. Also, the friction potential between the tire and the road was evaluated using a small ground robot.
机译:轮胎-道路摩擦估计是轮胎和汽车行业最普遍的问题之一。轮胎-道路摩擦的准确估算可提高牵引力和防抱死制动系统控制器的性能,从而减少事故的发生。几位研究人员在摩擦估计领域进行了研究,并且开发了许多轮胎模型来预测轮胎与道路的摩擦。在本文中,一种智能轮胎在轮胎的内衬层上放置了一个嵌入式加速度计,用于估算轮胎接触补丁长度参数和法向载荷。为此,首先是一个现有的轮胎测试拖车,该拖车配备了用于测量轮胎力和力矩的测力轮毂,用于测量车轮角速度的高精度编码器以及基于全球定位系统的设备VBOX,估计拖车的纵向速度。作为正常负载算法的实际应用,设计并制造了轮式地面机器人,该机器人在轮胎内部装有多个传感器,包括加速度计和柔性应变传感器(用于识别地形)。开发了一套算法,并将其与通过拖车和机器人收集的测试数据一起使用,并估算了接触贴片的长度和正常负载。另外,使用小型地面机器人评估了轮胎与道路之间的摩擦势。

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