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PHM-Oriented Sensor Optimization Selection Based on Multiobjective Model for Aircraft Engines

机译:基于多目标模型的面向PHM的飞机发动机传感器优化选择

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摘要

Prognostics and health management (PHM) is a widely used effective discipline consisting of advanced technologies and methods to assess the reliability of a system under its actual application conditions. It can be used to improve the safety and reliability of aircraft engines (AEs). In a PHM system for AEs, a large number of sensors are installed to provide health condition information. A selection of a minimal subset of the most informative and cost-effective sensors is required to monitor the optimum performance. In this paper, a PHM-oriented sensor optimization selection model is developed, which considers both sensor cost and monitoring performance as objective functions, and takes the PHM requirements as the constraints. A numerical example is given to demonstrate the sensor selection approach for an aircraft gas turbine engine. The results demonstrated that the proposed model and algorithm were effective and feasible, and were able to effectively guide the sensor selection for AEs.
机译:预测和健康管理(PHM)是一种广泛使用的有效学科,由先进的技术和方法组成,用于评估系统在实际应用条件下的可靠性。它可用于提高飞机发动机(AE)的安全性和可靠性。在用于AE的PHM系统中,安装了大量传感器以提供健康状况信息。需要选择最有用和最具成本效益的传感器的最小子集来监视最佳性能。本文建立了面向PHM的传感器优化选择模型,该模型以传感器成本和监测性能为目标函数,并以PHM需求为约束条件。数值例子说明了飞机燃气涡轮发动机的传感器选择方法。结果表明,所提出的模型和算法是有效可行的,能够有效地指导声发射传感器的选择。

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