Assessment of Health Monitoring Trustworthiness of Avionics Systems

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY International Journal of Prognostics and Health Management Pub Date : 2021-07-25 DOI:10.36001/ijphm.2021.v12i2.2907
V. Ulansky, I. Machalin, I. Terentyeva
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引用次数: 1

Abstract

The article provides a methodology for assessing the trustworthiness of health monitoring the dismounted avionics systems with automated test equipment (ATE). The indicators include the probabilities of false-positive, false-negative, true-positive, and true-negative. For the first time, we introduced into consideration the instability of the source of stimulus signal (SSS), the random and systematic component of the measuring channel error, and the reliability characteristics of the systems themselves. We consider a specific case of an exponential distribution of permanent failures and intermittent faults and derive formulas for calculating the trustworthiness indicators. Numerical calculations illustrate how the probabilities of correct and incorrect decisions depend on accuracy parameters. We show that the probabilities of false-positive and false-negative increase much faster than the probabilities of true-positive and true-negative decrease when the standard deviation of stimulus signal increases. For a Very High-Frequency Omni-Directional Range (VOR) receiver, we demonstrate that even with a zero random error generated by the source of the stimulus signal, the probabilities of false-positive and false-negative are different from zero.
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航空电子系统健康监测可信度评估
本文提出了一种利用自动测试设备(ATE)评估拆装航空电子系统健康监测可靠性的方法。这些指标包括假阳性、假阴性、真阳性和真阴性的概率。本文首次考虑了激励信号源的不稳定性、测量信道误差的随机性和系统性,以及系统本身的可靠性特性。我们考虑了永久性故障和间歇性故障的指数分布的具体情况,并推导了计算可信度指标的公式。数值计算说明了正确和错误决策的概率如何取决于精度参数。我们发现,当刺激信号的标准差增大时,假阳性和假阴性的概率增加的速度远快于真阳性和真阴性的概率减少的速度。对于甚高频全向范围(VOR)接收机,我们证明了即使刺激信号源产生的随机误差为零,假阳性和假阴性的概率也不等于零。
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来源期刊
CiteScore
2.90
自引率
9.50%
发文量
18
审稿时长
9 weeks
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