A hierarchical framework for fault propagation analysis in complex systems

Manzar Abbas, G. Vachtsevanos
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引用次数: 5

Abstract

In complex systems, there are few critical failure modes. Prognostic models are focused at predicting the evolution of those critical faults, assuming that other subsystems in the same system are performing according to their design specifications. In practice, however, all the subsystems are undergoing deterioration that might accelerate the time evolution of the critical fault mode. This paper aims at analyzing this aspect, i.e. interaction between different fault modes in various subsystems, of the failure prognostic problem. The application domain focuses on an aero propulsion system of the turbofan type. Creep in the high-pressure turbine blade is one of the most critical failure modes of aircraft engines. The effects of health deterioration of low-pressure compressor and high-pressure compressor on creep damage of high-pressure turbine blades are investigated and modeled.
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复杂系统故障传播分析的层次框架
在复杂系统中,临界失效模式很少。预测模型的重点是预测那些关键故障的演变,假设同一系统中的其他子系统按照其设计规范执行。然而,在实际应用中,所有子系统都处于劣化状态,这可能会加速临界故障模式的时间演化。本文旨在分析故障预测问题的这一方面,即各子系统中不同故障模式之间的相互作用。应用领域集中在涡扇型航空推进系统。高压涡轮叶片蠕变是航空发动机最关键的失效形式之一。研究了低压压气机和高压压气机的健康恶化对高压涡轮叶片蠕变损伤的影响,并建立了模型。
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