首页> 外文会议>International Technical Conference on the Enhanced Safety of Vehicles >DEVELOPMENT OF CAE SIMULATED CRASH PULSES FOR AIRBAG SENSOR ALGORITHM/CALIBRATION IN FRONTAL IMPACTS
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DEVELOPMENT OF CAE SIMULATED CRASH PULSES FOR AIRBAG SENSOR ALGORITHM/CALIBRATION IN FRONTAL IMPACTS

机译:用于气囊传感器算法/校准的CAE模拟碰撞脉冲的开发

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Development of frontal impact airbag sensor algorithms/calibrations requires crash signals, which can be obtained from vehicle crash testing and/or CAE simulations. This paper presents the development of finite element sensor models to generate CAE simulated crash pulses/signals at the sensing location during frontal impacts. These signals will be evaluated for potential used in the airbag sensor algorithm/calibration. The study includes (1) use of the concept of frequency analysis to determine a cut-off frequency for extracting representative signals at the sensor locations for various carlines during frontal crashes, (2) assessment of current CAE capability in the frequency domain to see whether FEA models can predict sensor pulses up to this cut-off frequency, (3) identification of areas for potential further improvements in FEA methods, (4) development of signal processing to remove high frequency noise from CAE simulated pulses, and (5) development of a single quality sensor model. These methodologies are applicable to both car and truck programs. In addition, a single car crash/sensor model will be used to demonstrate generation of simulated sensor signals for calibration in a single-point sensing system. Simulated CAE singles include pulses from various frontal impact modes (fixed barrier at 90o and pole impact) for a spectrum impact velocities ranging from 8 mph to 35 mph. Comparisons between the simulated and test sensor signals will be presented.
机译:正面影响气囊传感器算法/校准的开发需要碰撞信号,其可以从车辆碰撞测试和/或CAE模拟中获得。本文介绍了有限元传感器模型的开发,以在正面冲击期间在感测位置产生CAE模拟崩溃脉冲/信号。将评估这些信号以用于安全气囊传感器算法/校准中使用的潜力。该研究包括(1)使用频率分析的概念来确定截止频率,用于在正面崩溃期间提取各种卡车的传感器位置处的代表信号,(2)评估频域中的电流CAE能力,以查看是否FEA模型可以将传感器脉冲预测到这种截止频率,(3)识别用于FEA方法的潜在进一步改进的区域,(4)信号处理的开发,以从CAE模拟脉冲中去除高频噪声,(5)开发单一质量传感器模型。这些方法适用于汽车和卡车节目。此外,单辆车碰撞/传感器模型将用于展示模拟传感器信号的产生,以便在单点传感系统中校准。模拟CAE单打包括来自各种正面冲击模式的脉冲(90O和极撞击时的固定屏障),用于频谱冲击速度范围为8英里/小时至35英里/小时。将呈现模拟和测试传感器信号之间的比较。

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