首页> 外文会议>International Technical Conference on the Enhanced Safety of Vehicles >TESTING OF HEAVY TRUCK TIRE PRESSURE MONITORING SYSTEMS (TPMS) IN ORDER TO DEFINE AN ACCEPTANCE TEST PROCEDURE
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TESTING OF HEAVY TRUCK TIRE PRESSURE MONITORING SYSTEMS (TPMS) IN ORDER TO DEFINE AN ACCEPTANCE TEST PROCEDURE

机译:重型卡车轮胎压力监测系统(TPMS)的测试,以定义验收测试程序

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Several manufacturers produce tire pressure monitoring systems for heavy trucks which are designed to detect low tire pressure and alert the driver. This paper reports on a series of test procedures conducted on these aftermarket TPMS to determine the suitability of these tests for use in developing performance requirements. Five TPMS were installed one at a time on two heavy trucks. The minimum activation pressure of the TPMS was determined. After driving for a period of up to fifteen minutes, the vehicle was stopped and air was released from one tire to bring its inflation pressure to a point below the minimum activation pressure for the system. The vehicle was driven and the time needed for the system to detect the loss of pressure and alert the driver was recorded. Multiple tire deflations and failure modes were also tested. Data were obtained from independent onboard instrumentation that measured tire pressure, vehicle speed and distance, and ambient temperature. A video of the TPMS driver display was recorded. Other properties were also evaluated, including temperature compensation accuracy of system pressure measurement and failure modes. The study's results are limited to the five systems tested. Although these systems were chosen to be representative of TPMS on the market, this was not an exhaustive study of all such systems.
机译:若干制造商生产用于重型卡车的轮胎压力监测系统,设计用于检测低轮胎压力并提醒驾驶员。本文报告了在这些售后市场TPMS上进行的一系列测试程序,以确定这些测试的适用性,以便在开发性能要求方面使用。在两辆重型卡车上一次安装五个TPMS。确定TPM的最小活化压力。在驾驶最多十五分钟后,车辆被停止,从一个轮胎释放空气,以使其充气压力降至系统最小活化压力的点。将车辆被驱动,并记录了系统检测压力损失和警报驾驶员所需的时间。还测试了多个轮胎通货紧缩和失效模式。从独立的车载仪器获得数据,测量轮胎压力,车速和距离和环境温度。记录了TPMS驱动程序显示屏的视频。还评估了其他性能,包括系统压力测量和故障模式的温度补偿精度。该研究的结果仅限于测试的五种系统。虽然这些系统被选为市场上的TPMS代表,但这并不是对所有这些系统的详尽研究。

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