冲击传感器汽车安全系统信息信号的处理算法

S. Vasyukov, Alexander Macovey
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引用次数: 3

摘要

现代汽车安全系统是复杂的多处理器系统,其中主要模块通过数字总线与外围设备进行交互。其中一种装置是基于微处理器的冲击传感器。传感器的传感元件通常是MEMS加速度计。为了区分对车身的弱冲击和强冲击,传感器有两个操作区域(两个级别)。有关冲击传感器的出版物主要是广告性质的。这是由于生产机密和不愿透露信号处理算法。本文给出了撞击车身时加速度的实验数据。提出了一种排除虚警的信息信号处理算法,并允许实现具有16个可调灵敏度级的数字传感器,并适应周期性干扰影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algorithms for Processing the Information Signal of the Shock Sensor Car Security System
Modern car security systems are complex, multiprocessor systems in which the main module interacts with peripheral devices via digital buses. One such device is a microprocessor-based shock sensor. The sensing element of the sensor is usually a MEMS accelerometer. To distinguish between weak and strong impacts on the car body, the sensors have two zones (two levels) of operation. Publications on shock sensors are mainly advertising in nature. This is due to production secrets and unwillingness to disclose signal processing algorithms. The paper presents experimental data on accelerations upon impact on a car body. An information signal processing algorithm is proposed that excludes false alarms and allows the implementation of a digital sensor with 16 adjustable sensitivity gradations and adaptation to periodic disturbing influences.
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