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Reliability-based robust design of smart sensing systems for failure diagnostics using piezoelectric materials

机译:基于压电材料的故障诊断的智能传感系统的基于可靠性的鲁棒设计

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摘要

This paper presents a reliability-based robust design approach to develop piezoelectric materials based structural sensing systems for failure diagnostics and prognostics. A detectability measure is defined to evaluate the performance of any given sensing system, and the sensing system design problem can be formulated to maximize detectability for different failure modes by optimally allocating piezoelectric materials into a target structure. This formulation can be conveniently solved within a reliability-based robust design framework to ensure design robustness while considering the uncertainties such as those from structure properties and operation conditions. Two case studies, that design sensor networks for an aircraft wing panel and a power transformer structure, are employed to demonstrate the effectiveness of the proposed methodology in developing multifunctional material sensing systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于可靠性的稳健设计方法,用于开发基于压电材料的结构传感系统,以进行故障诊断和预测。定义了可检测性度量以评估任何给定传感系统的性能,并且可以制定传感系统设计问题,以通过将压电材料最佳地分配到目标结构中来最大化不同故障模式的可检测性。可以在基于可靠性的稳健设计框架内方便地解决此问题,以确保设计稳健性,同时考虑诸如结构特性和操作条件等不确定性。通过两个案例研究,即为飞机机翼板设计传感器网络和电源变压器结构,来论证所提出的方法论在开发多功能材料传感系统中的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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