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POWERTRAIN DIAGNOSTICS - PART 1 - DETECTING INJECTOR DEACTIVATION FAILURE MODES IN DIESEL ENGINES USING SIMPLE TIME DOMAIN APPROACHES

机译:动力总成诊断-第1部分-使用简单时域方法检测柴油机中的喷油嘴失灵故障模式

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This report documents the investigation of fuel injector fault detection methods for a seven liter diesel engine. This effort was conducted for the Tank Automotive Research Development Engineering Center (TARDEC) Condition Based Maintenance (CBM) team. The task of this investigation was to develop algorithms capable of real-time detection of injector misfire events. The purpose of this task was to enable TARDEC's Engine Control Management (ECM) research and development efforts to evaluate the technical feasibility of integrating automated on-board condition monitoring algorithms with future ECM monitoring and control operations.During this investigation, it has been shown that multiple techniques can correctly detect and identify injector cylinder misfiring. Each individual technique has its own advantages, and this investigation focused on signal processing methods that would be suitable for embedding in an engine controller or processor. The list below includes six injector fault analysis approaches that were evaluated for this effort: 1. Injector signal analysis 2. Cylinder head vibration analysis 3. Crankshaft speed analysis in time domain 4. Crankshaft speed analysis in order domain 5. FFT classifier selection technique 6. Time domain classification technique This paper highlights the first three diagnostics techniques. On-platform tests are suggested for technique validation and future development of these initial findings.
机译:该报告记录了7升柴油发动机喷油器故障检测方法的研究。这项工作是由Tank汽车研究开发工程中心(TARDEC)的基于状态的维护(CBM)团队进行的。这项研究的任务是开发能够实时检测喷油器失火事件的算法。这项任务的目的是使TARDEC的发动机控制管理(ECM)研究和开发工作能够评估将自动车载状态监测算法与未来的ECM监测和控制操作相集成的技术可行性。多种技术可以正确地检测和识别喷油器气缸失火。每种单独的技术都有其自身的优势,本研究着重于适用于嵌入引擎控制器或处理器中的信号处理方法。以下列表包括为此目的而评估的六种喷射器故障分析方法:1.喷射器信号分析2.缸盖振动分析3.时域的曲轴速度分析4.阶域的曲轴速度分析5. FFT分类器选择技术6时域分类技术本文重点介绍前三种诊断技术。建议在平台上进行测试以进行技术验证和这些初步发现的未来发展。

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