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Comparative Analysis of Tire Evaluation Methods for an indirect Tire Pressure Monitoring System (iTPMS)

机译:间接轮胎压力监测系统的轮胎评价方法对比分析(ITPMS)

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Starting from the USA and followed by the European Union, legal requirements concerning “Tire Pressure Monitoring Systems” (TPMS) for passenger cars and light trucks will be introduced in China as well and therefore in the third of the three largest automobile markets worldwide. Changes of pressure dependent physical tire properties such as dynamic roll radius and a certain tire eigenfrequency, which are included in the ESC-wheel speed signals, indicates pressure loss in an indirect manner. Systems with corresponding working principles are called “indirect Tire Pressure Monitoring System” (iTPMS). Since the tire is a structural element with varying characteristics according to the design parameters, the roll radius and frequency behavior due to pressure loss is variable as well. As a consequence, tires have to be evaluated regarding there compatibility to iTPMS during the vehicle development process. In order to firstly reduce the testing effort on the complete vehicle and secondly to perform the evaluation at an earlier stage in the development process, tires shall be tested on external drum test rigs. This paper researches the systematic differences between the tire evaluation at whole vehicle driving tests on road and at tire test rigs. Based on testing results and simulation models the interaction of tire vibration behavior and suspension influences is analyzed as well as excitation characteristics of roads and cleat crossings.
机译:从美国开始并遵循欧盟,中国的乘用车和轻型卡车的“轮胎压力监测系统”(TPMS)的法律要求将在中国介绍,因此在全球三大汽车市场的三分之一。压力依赖性物理轮胎性质如动态滚动半径和某些轮胎特征频率,包括在ESC轮速度信号中,表示以间接方式的压力损失。具有相应工作原理的系统称为“间接轮胎压力监测系统”(ITPMS)。由于轮胎是根据设计参数的具有不同特性的结构元件,因此由于压力损失引起的辊半径和频率行为也是可变的。因此,必须在车辆开发过程中对ITPM的兼容性进行评估轮胎。为了首先降低完整车辆的测试努力,其次是在开发过程中初期执行评估,应在外部鼓试验台上进行轮胎。本文研究了道路和轮胎试验台的整个车辆驾驶试验的轮胎评价之间的系统差异。基于测试结果和仿真模型,分析了轮胎振动行为和悬架影响的相互作用以及道路和夹层交叉的激励特性。

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