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Reliability of Coordinate Sensor Systems Under the Risk of Sensor Precision Degradations

机译:传感器精度下降的风险下的坐标传感器系统的可靠性

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This paper proposes a system reliability model of coordinate sensor systems used for manufacturing process fault diagnosis. The system working condition is derived based on engineering knowledge and the least squares fault diagnosis algorithm when considering the sensor failure mode of sensor precision degradation. It turns out that the system working conditions are the same as those of the so-called series-weighted- ${bf k}$-out-of- $n$ systems. When applying the existing algorithms for series-weighted-${bf k}$-out-of-$n$ systems in real manufacturing situation, however, an exponential computational time is needed as the coefficients are not in a discrete scale. In order to overcome this difficulty, a weight interval method is developed in this paper to evaluate the upper bound and lower bound of system reliability efficiently. A case study for an automotive body assembly process is used to demonstrate the developed model and algorithms.
机译:本文提出了一种用于制造过程故障诊断的坐标传感器系统的系统可靠性模型。当考虑传感器精度下降的传感器故障模式时,基于工程知识和最小二乘故障诊断算法,得出系统的工作条件。事实证明,该系统的工作条件与所谓的系列加权的$ {bf k} $ out-of- $ n $系统的工作条件相同。然而,当在实际制造情况下将现有算法应用于$ n $ {$ bf k} $ n $以外的系列加权系统时,由于系数不在离散范围内,因此需要指数计算时间。为了克服这一困难,本文提出了一种权重区间法来有效地评估系统可靠性的上限和下限。以汽车车身组装过程为例,以演示开发的模型和算法。

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