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A model based framework for fault diagnosis and prognosis of dynamical systems with an application to helicopter transmissions.

机译:基于模型的动力系统故障诊断和预后框架及其在直升机变速器中的应用。

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摘要

The thesis presents a framework for integrating models, simulation, and experimental data to diagnose incipient failure modes and prognosticate the remaining useful life of critical components, with an application to the main transmission of a helicopter. Although the helicopter example is used to illustrate the methodology presented, by appropriately adapting modules, the architecture can be applied to a variety of similar engineering systems. Models of the kind referenced are commonly referred to in the literature as physical or physics-based models. Such models utilize a mathematical description of some of the natural laws that govern system behaviors.; The methodology presented considers separately the aspects of diagnosis and prognosis of engineering systems, but a similar generic framework is proposed for both. The methodology is tested and validated through comparison of results to data from experiments carried out on helicopters in operation and a test cell employing a prototypical helicopter gearbox. Two kinds of experiments have been used. The first one retrieved vibration data from several healthy and faulted aircraft transmissions in operation. The second is a seeded-fault damage-progression test providing gearbox vibration data and ground truth data of increasing crack lengths. For both kinds of experiments, vibration data were collected through a number of accelerometers mounted on the frame of the transmission gearbox. The applied architecture consists of modules with such key elements as the modeling of vibration signatures, extraction of descriptive vibratory features, finite element analysis of a gearbox component, and characterization of fracture progression.; Contributions of the thesis include: (1) generic model-based fault diagnosis and failure prognosis methodologies, readily applicable to a dynamic large-scale mechanical system; (2) the characterization of the vibration signals of a class of complex rotary systems through model based techniques; (3) a "reverse engineering" approach for fault identification using simulated vibration data; (4) the utilization of models of a faulted planetary gear transmission to classify descriptive system parameters either as fault-sensitive or fault-insensitive; and (5) guidelines for the integration of the model-based diagnosis and prognosis architectures into prognostic algorithms aimed at determining the remaining useful life of failing components.
机译:本文提出了一种集成模型,仿真和实验数据的框架,以诊断早期失效模式并预测关键部件的剩余使用寿命,并将其应用于直升机的主要传动装置。尽管以直升机为例来说明所介绍的方法,但通过适当调整模块,该体系结构可以应用于各种相似的工程系统。在文献中通常将这种类型的模型称为基于物理或基于物理的模型。这些模型利用了一些自然的规律来对系统行为进行数学描述。提出的方法分别考虑了工程系统的诊断和预后方面,但是为两者都提出了类似的通用框架。通过将结果与在操作中的直升机和采用原型直升机变速箱的测试单元上进行的实验数据进行比较,对方法进行了测试和验证。已经使用了两种实验。第一个从运行中的数个健康且故障的飞机变速器中检索振动数据。第二个是种子故障破坏进度测试,提供齿轮箱振动数据和裂纹长度增加的地面真实数据。对于这两种实验,振动数据都是通过安装在变速器齿轮箱框架上的多个加速度计收集的。应用的体系结构由具有关键要素的模块组成,这些要素包括振动特征的建模,描述性振动特征的提取,齿轮箱组件的有限元分析以及断裂进展的表征。论文的主要贡献包括:(1)基于通用模型的故障诊断和故障预测方法,易于应用于动态大型机械系统。 (2)通过基于模型的技术表征一类复杂的旋转系统的振动信号; (3)使用模拟振动数据进行故障识别的“逆向工程”方法; (4)利用有故障的行星齿轮传动装置的模型来将描述性系统参数分类为对故障敏感的或对故障不敏感的; (5)将基于模型的诊断和预后架构集成到预后算法中的指南,旨在确定故障组件的剩余使用寿命。

著录项

  • 作者

    Patrick-Aldaco, Romano.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 280 p.
  • 总页数 280
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:39:48

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