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Durability Test Mode for LED Adaptive Front Lighting System by Failure Mode Effect Analysis

机译:耐久性测试模式对于LED自适应前照明系统故障模式效果分析

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Recently, many kinds of new technology systems are adapted to a new developing vehicle. However the field usage information of a new technology system could not be easily obtained because it has not been used by customers. It is not easy to evaluate the reliability and durability of this system. In this research, the durability test mode of a new Adaptive Front Lighting System (AFLS) with Light Emitting Diodes (LEDs) as a new light source has been developed for a new large luxury sedan vehicle. First of all, the failure mode effect was analyzed by considering failure mechanism for each component. The thermal, vibrational, operational and electrical loads were investigated. The Road Load Data Acquisition (RLDA) technique was used to collect the vibration and temperature of an AFLS in a proving ground. The vibration test mode was designed by a Power Spectral Density (PSD) approach. The customer usage data was used for making the target cycles of operational movement such as swiveling. The customer usage data have been gathered by a newly developed data monitoring system using a smartphone, Controller Area Network (CAN) Bluetooth dongle. The thermal loads making an effect on life time of LEDs was investigated. The combined environmental durability test mode has been developed for a new AFLS. The test mode was verified by comparing between the accelerated rig test and a proving ground test.
机译:最近,许多新的技术系统适用于新的开发车辆。然而,新技术系统的现场使用信息无法轻易获得,因为客户尚未使用。评估该系统的可靠性和耐用性并不容易。在该研究中,为新的大型豪华轿车车辆开发了一种具有发光二极管(LED)的新型自适应前照明系统(AFL)的耐久性测试模式。首先,通过考虑每个组件的故障机制来分析故障模式效果。研究了热,振动,操作和电负载。道路载荷数据采集(RLDA)技术用于在经过证明地面收集AFL的振动和温度。振动测试模式由功率谱密度(PSD)方法设计。客户使用数据用于制作诸如旋转的操作运动的目标周期。使用智能手机,控制器区域网络(CAN)蓝牙加密狗,通过新开发的数据监控系统收集了客户使用数据。研究了产生对LED终生时间的热负荷。已经为新的AFL开发了组合的环境耐久性测试模式。通过比较加速钻机测试和证明地测试来验证测试模式。

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