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Aircraft hydraulic power system diagnostic, prognostics and health management

机译:飞机液压动力系统的诊断,预测和健康管理

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摘要

This Individual Research Project (IRP) is the extension research to the group design project (GDP) work which the author has participated in his Msc programme. The GDP objective is to complete the conceptual design of a 200-seat, flying wing civil airliner—FW-11. The next generation aircraft design demands higher reliability, safety and maintainability.With the development of the vehicle hydraulic system technology, the equipment and systems become more and more complex, their reliability and maintenance become more difficult for designers, manufacturers and customers. To improve the mission reliability and reduce life cycle cost, there is strong demand for the application of health management technology into airframe system design.In this research, the author introduced diagnostic, prognostic and health management (DPHM) concept into the aircraft hydraulic power system development. As a brand new technology, it is a challenge to apply the DPHM techniques to on-board system. Firstly, an assumed hydraulic power system was designed for FW-11 by the author and used as the case in his IRP research. Then the crucial components and key parameters needed to be monitored were obtained based on Function Hazard Analysis and Failure Modes Effects Analysis of this system. The writer compared a few diagnostic and prognostic methods in detail, and then selected suitable ones for a hydraulic power system. A diagnostic process was applied to the hydraulic power system using a Case-based reasoning (CBR) approach, whilst a hybrid prognostic method was suggested for the system. After that, a diagnostic, prognostic and health management (DPHM) architecture of the hydraulic power system was designed at system level based on the diagnostic and prognostic research. The whole research work provided a general and practical instruction for hydraulic system design by means of DPHM application.
机译:该个人研究项目(IRP)是作者参与其Msc计划的团队设计项目(GDP)工作的延伸研究。 GDP的目标是完成200座飞翼民用客机FW-11的概念设计。下一代飞机的设计要求更高的可靠性,安全性和可维护性。随着车辆液压系统技术的发展,设备和系统变得越来越复杂,其可靠性和维护对于设计人员,制造商和客户来说都变得更加困难。为了提高任务的可靠性并降低生命周期成本,对健康管理技术在机身系统设计中的应用提出了强烈要求。在这项研究中,作者将诊断,预后和健康管理(DPHM)概念引入了飞机液压动力系统。发展。作为一项崭新的技术,将DPHM技术应用于车载系统是一项挑战。首先,作者为FW-11设计了一个假定的液压动力系统,并将其用作IRP研究的案例。然后基于该系统的功能危害分析和失效模式影响分析,获得了需要监测的关键部件和关键参数。作者详细比较了几种诊断和预后方法,然后为液压动力系统选择了合适的方法。使用基于案例的推理(CBR)方法将诊断过程应用于液压动力系统,同时建议对该系统采用混合预后方法。之后,基于诊断和预后研究,在系统级设计了液压动力系统的诊断,预后和健康管理(DPHM)架构。整个研究工作为通过DPHM应用的液压系统设计提供了通用和实用的指导。

著录项

  • 作者

    Wang Jian;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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