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A Novel Health Evaluation Strategy for Multifunctional Self-Validating Sensors

机译:多功能自验证传感器的新型健康评估策略

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摘要

The performance evaluation of sensors is very important in actual application. In this paper, a theory based on multi-variable information fusion is studied to evaluate the health level of multifunctional sensors. A novel conception of health reliability degree (HRD) is defined to indicate a quantitative health level, which is different from traditional so-called qualitative fault diagnosis. To evaluate the health condition from both local and global perspectives, the HRD of a single sensitive component at multiple time points and the overall multifunctional sensor at a single time point are defined, respectively. The HRD methodology is emphasized by using multi-variable data fusion technology coupled with a grey comprehensive evaluation method. In this method, to acquire the distinct importance of each sensitive unit and the sensitivity of different time points, the information entropy and analytic hierarchy process method are used, respectively. In order to verify the feasibility of the proposed strategy, a health evaluating experimental system for multifunctional self-validating sensors was designed. The five different health level situations have been discussed. Successful results show that the proposed method is feasible, the HRD could be used to quantitatively indicate the health level and it does have a fast response to the performance changes of multifunctional sensors.
机译:传感器的性能评估在实际应用中非常重要。本文研究了一种基于多变量信息融合的理论,以评估多功能传感器的健康水平。定义了一种健康可靠度(HRD)的新概念来指示定量的健康水平,该水平不同于传统的所谓的定性故障诊断。为了从本地和全局角度评估健康状况,分别定义了多个时间点的单个敏感组件的HRD和单个时间点的整个多功能传感器的HRD。通过使用多变量数据融合技术和灰色综合评估方法来强调HRD方法。在这种方法中,为了获得每个敏感单元的独特重要性和不同时间点的敏感度,分别使用了信息熵和层次分析法。为了验证该策略的可行性,设计了一种用于多功能自验证传感器的健康评估实验系统。已经讨论了五种不同的健康水平情况。成功的结果表明,该方法是可行的,HRD可用于定量指示健康水平,并且对多功能传感器的性能变化具有快速响应。

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