电力机车创新高效诊断方法研究

Atit Mishra, Preety N. Tripathi, Rahul Kumar, Anand Bhardwaj, Kay Fabien, Philippe Brunet
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引用次数: 0

摘要

本文介绍了为电力机车车辆设计和开发项目开发和部署一种新颖的“高效行动的良好创新诊断”(简称“好主意”)方法。为了实现这一目标,我们在系统工程框架内分享了一个系统和实用的方法,该方法主要解决了一些最关键的横向学科的结果,安全性,可靠性和可用性作为Good IDEA的谱系[1]。我们讨论了功能分析的某些技术,这些技术自动地转移焦点以满足可测试性设计(DfT)的目标。这些功能包括检测和报告功能不再可用或不再响应的能力;以及定位导致功能不可用的故障组件的能力。案例研究表明,围绕功能故障环境构建的诊断不仅有助于满足可测试性目标,而且还通过启用基于状态的维护(CBM)、执行大数据分析来支持各种用例和不同利益相关者的需求,从而获得回报。其中最关键的步骤之一是将机车上的数据以接近实时的方式从机车传输到地面,这是支持远程监控的机器对机器(M2M)通信的典型用例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methodology for An Innovative and Efficient Diagnostics of Electric Locomotive
This paper presents the development and deployment of a novel, Good Innovative Diagnostics for an Efficient Action (referred to as Good IDEA program) methodology for an electric locomotive rolling stock design and development project. To achieve this, we share a systematic and pragmatic approach within system engineering framework that addresses the outcomes of some of the most critical transversal disciplines mainly, safety, reliability and availability as the pedigree of Good IDEA[1]. We discuss certain techniques of functional analysis that automatically shift the focus to satisfy the objectives of Design for Testability (DfT). These include the ability to detect and report that a function is no longer available or responding as it should; And the ability to localize the faulty component causing the function deemed unavailable. Case studies are presented through which it is shown that diagnostics built around a context of functional failure not only helps in satisfying the objectives of testability, but it also rewards by enabling Condition Based Maintenance (CBM), perform big data analytics to support various use cases and different stakeholder needs. One of the most critical steps involving transmission of onboard data from locomotive to ground on the near real-time basis is highlighted as a typical use case of Machine-to-Machine (M2M) communication supporting remote monitoring.
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