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    • 7. 发明授权
    • Vehicle seat occupant status classification using multiple sensors
    • 车载乘员状态分类使用多个传感器
    • US07024294B2
    • 2006-04-04
    • US10653698
    • 2003-09-02
    • Stuart S. SullivanJames F. PattersonMorgan D. MurphyCharles A. Gray
    • Stuart S. SullivanJames F. PattersonMorgan D. MurphyCharles A. Gray
    • B60R22/00E05F15/00G05D1/00G05D3/00G06F17/00
    • B60R21/01516B60R21/0155
    • A multiple sensor, vehicle seat occupant status determination system uses dynamic variations in occupant responsive sensor output due to accelerations of the vehicle seat to discriminate via a statistical method between sensors that are failed and those that are operating correctly and eliminates the contribution of signals detected as not valid from the status determination. If and only if the maximum and minimum sampled signal values of at least one of the received signals span upper and lower control reference values derived from the sampled signal values, a variance value for each of the signals is derived; and one or both of the greatest two or the smallest two variance values are checked against a relative size factor to detect an outlier signal value. If an outlier signal value is detected more than a predetermined number of consecutive times, the status classification is performed without signal values from the outlier sensor.
    • 多传感器,车辆座椅占用者状态确定系统由于车辆座椅的加速度而使用乘员响应传感器输出中的动态变化,以通过故障传感器和正常操作的传感器之间的统计方法来区分,并消除了检测到的信号的贡献 从状态确定无效。 当且仅当至少一个接收信号的最大和最小采样信号值跨越从采样信号值导出的上限和下限控制参考值时,导出每个信号的方差值; 并且相对于相对大小因子检查最大的两个或最小的两个方差值中的一个或两个以检测异常值信号值。 如果检测到超过预定数量的连续时间的异常信号值,则不执行来自异常值传感器的信号值来执行状态分类。
    • 10. 发明授权
    • Method and apparatus for preserving calibration data in a vehicle seat occupant detection system
    • 用于在车辆座椅乘员检测系统中保存校准数据的方法和装置
    • US06650978B1
    • 2003-11-18
    • US10159691
    • 2002-05-31
    • James F. PattersonCharles A. GrayJay W HigbeeJohn D. ScottLee M Dziekan
    • James F. PattersonCharles A. GrayJay W HigbeeJohn D. ScottLee M Dziekan
    • G06F700
    • B60R21/01512
    • Dedicated memory locations for vehicle identification data and seat calibration data are provided in a first rewritable, non-volatile memory within an occupant detection system module and a second rewritable, non-volatile memory external to the occupant detection system. At least once each ignition cycle, preferably at power up, an algorithm responsive to vehicle identification data obtained from the vehicle, stored in the first rewritable, non-volatile memory and/or stored in the second rewritable, non-volatile memory, as well as the presence of seat calibration data in the first rewritable, non-volatile memory, controls the copying of seat calibration data and/or vehicle identification data between the first and second rewritable, non-volatile memories to preserve seat calibration data for a vehicle through replacement of the occupant detection system module or the entire occupant detection system.
    • 用于车辆识别数据和座椅校准数据的专用存储器位置被提供在乘员检测系统模块和乘员检测系统外部的第二可重写非易失性存储器中的第一可重写,非易失性存储器中。 至少一次每个点火循环,优选地在上电时,响应于从车辆获得的车辆识别数据,存储在第一可重写,非易失性存储器中和/或存储在第二可重写非易失性存储器中的算法,以及 由于在第一可重写非易失性存储器中存在座椅校准数据,所以控制在第一和第二可重写非易失性存储器之间复制座椅校准数据和/或车辆识别数据,以保持车辆的座椅校准数据 更换乘员检测系统模块或整个乘员检测系统。