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Evaluation of Air Bag Electronic Sensing System Collision Performance through Laboratory Simulation

机译:通过实验室模拟评估空气袋电子传感系统碰撞性能的评估

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Since their inception, the design of airbag sensing systems has continued to evolve. The evolution of air bag sensing system design has been rapid. Electromechanical sensors used in earlier front air bag applications have been replaced by multi-point electronic sensors used to discriminate collision mechanics for potential air bag deployment in front, side and rollover accidents. In addition to multipoint electronic sensors, advanced air bag systems incorporate a variety of state sensors such as seat belt use status, seat track location, and occupant size classification that are taken into consideration by air bag system algorithms and occupant protection deployment strategies. Electronic sensing systems have allowed for the advent of event data recorders (EDRs), which over the past decade, have provided increasingly more information related to air bag deployment events in the field. To further aid in the evaluation of air bag field performance and interpretation of EDR downloads, a test methodology was developed so that controlled actuation of air bag system sensing elements could be achieved that accurately simulates vehicle collision dynamics. This was accomplished with the air bag control module removed from the vehicle and installed on physical actuators (linear and/or rotary) while still connected to the vehicle wiring harness. Controlled excitation of air bag sensing elements while simultaneously monitoring the outputs of the air bag system control module allows for assessment of system performance under various collision pulses and state sensor conditions. The presented test methodology provides a tool for evaluating field performance and EDR reporting in a controlled laboratory environment, without a priori knowledge of the underlying air bag algorithm or the expense and difficulty of running vehicle crashes.
机译:自成立以来,安全气囊传感系统的设计继续发展。气囊传感系统设计的演变一直很快。早期前气囊应用中使用的机电传感器已被用于区分前,侧和翻转事故中的潜在气囊部署的碰撞机制的多点电子传感器。除了多点电子传感器外,先进的气囊系统还包含各种状态传感器,如安全带使用状态,座椅轨道位置和乘员尺寸分类,这些分类是通过空气袋系统算法和乘员保护部署策略考虑的。电子传感系统允许在过去十年中的事件数据记录仪(EDRS)的出现时,提供了越来越多的信息与现场的空气袋部署事件有关。为了进一步帮助评估空气袋现场性能和EDR下载的解释,开发了一种测试方法,从而可以实现气囊系统传感元件的受控驱动,以便精确模拟车辆碰撞动态。这是通过从车辆移除的气囊控制模块并安装在物理致动器(线性和/或旋转)上的同时连接到车辆线束。控制气囊传感元件的控制激发同时监测空气袋系统控制模块的输出允许在各种碰撞脉冲和状态传感器条件下评估系统性能。所呈现的测试方法提供了一种用于评估受控实验室环境中的现场性能和EDR报告的工具,而无需先验的空气袋算法或运行车辆崩溃的费用和难度。

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