PHM作为飞行器概念设计中的设计变量

D. Bodden, W. Hadden, B. E. Grube, N. S. Clements
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引用次数: 12

摘要

飞行器飞行关键系统通过不同的冗余设计技术(包括物理系统冗余)来实现所需的可靠性。通过实现准确的剩余使用寿命(RUL)算法,预测和健康管理技术提供了消除一些物理冗余(和相关权重)的机会。在概念设计过程中预先考虑这种子系统设计方法,而不是在飞行器系统的详细设计阶段的下游考虑,可能会产生更优的可靠性和重量方面的飞行器配置。以RUL算法置信度、控制面致动器冗余度和控制面构型为优化变量,给出了一种无人机设计优化的结果。优化约束包括着陆分散、任务可靠性和任务可用性。在合理的RUL精度要求下,实现了飞行器重量的减少
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PHM as a Design Variable in Air Vehicle Conceptual Design
Flight critical systems in air vehicles achieve required reliability through different redundancy design techniques including physical system redundancy. Prognostics and health management technology provides the opportunity to eliminate some of the physical redundancy (and associated weight) through implementation of accurate remaining useful life (RUL) algorithms. Consideration of this subsystem design approach upfront during the conceptual design process rather than downstream during the detailed design phase of the air vehicle system may produce a more optimal air vehicle configuration with regard to reliability and weight. Results are presented for an unmanned air vehicle design optimization which included RUL algorithm confidence, control surface actuator redundancy and control surface configuration as optimization variables. Optimization constraints included landing dispersion, mission reliability and mission availability. Reductions in air vehicle weight were achieved with reasonable RUL accuracy requirements
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