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Platform Misdiagnoses, NEOFs, and the ATE Perspective

机译:平台错误诊断,NEOF和ATE观点

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The most costly phase of a military platform's lifecycle historically can be its Operations and Support phase, in which the majority of maintenance occurs. It is prudent that the management of every platform consisting of Line Replaceable Units (LRU), Line Replaceable Modules, and sub-component Shop Replaceable Units includes an effective and efficient support strategy with highly accurate diagnostics at multiple levels of maintenance. Effective platform support strategies require the understanding of ever-increasing system complexities, critical temporal dependencies, and operational environmental conditions, all of which contribute to the challenge of developing diagnostics. Due to these challenges, Automatic Test Equipment (ATE), which are general purpose tools, and, when coupled with platform specific software are often utilized off-platform to verify, diagnose, and provide feedback of the LRU condition to provide accurate and repeatable diagnostics. ATE provides a much needed component of support, however, there are other factors which are also critical to the support process and can lead to misdiagnoses. These types of misdiagnoses include, but are not limited to, a frequently debated metric within the Department of Defense (DoD) commonly called “False Fails” or “No Fault Found” or “No Evidence of Failure (NEOF).” As seen for many years, making an incorrect diagnosis, for whatever the reason, can lead to numerous scenarios of unnecessary expenditures of resources due to the component's unnecessary removal, replacement, handling, shipping, processing, and transportation. The loss of these resources represent a significant cost across the Service in which they operate. As the DoD budgets are already strained and the operational tempo is ever-challenging, we must provide every advantage to the Warfighter by keeping their weapon platforms fully operational and free from misdiagnoses and unnecessary downtime, which adversely affects our nation's readiness and warfighting advantage. This paper describes some of the types and sources of component misdiagnoses at different levels of maintenance, plausible root causes, and recommendations for reduction and mitigation, including the role of ATE in a platform's support structure as a combat force multiplier and its (often misunderstood) effect on mitigation of misdiagnoses and NEOFs.
机译:历史上,军事平台生命周期中最昂贵的阶段可能是其操作和支持阶段,其中大部分维护工作都在其中进行。谨慎的做法是,对由生产线可替换单元(LRU),生产线可替换模块和子组件车间可替换单元组成的每个平台的管理,应包含有效且高效的支持策略,并在多个维护级别上进行高度准确的诊断。有效的平台支持策略需要了解不断增长的系统复杂性,关键的时间依赖性和操作环境条件,所有这些因素都对开发诊断程序提出了挑战。由于这些挑战,自动测试设备(ATE)是通用工具,当与平台专用软件结合使用时,通常会在平台外使用以验证,诊断和提供LRU条件的反馈,以提供准确且可重复的诊断。 ATE提供了非常需要的支持组件,但是,还有其他因素对于支持过程也很重要,并且可能导致误诊。这些类型的错误诊断包括但不限于国防部(DoD)中经常被争论的指标,通常称为“错误失败”或“未发现错误”或“没有失败证据(NEOF)”。如多年以来所见,由于组件的不必要的拆卸,更换,处理,运输,加工和运输,无论出于何种原因进行错误的诊断都可能导致许多不必要的资源消耗情况。这些资源的损失代表了其运营所在服务中的重大成本。由于国防部的预算已经紧张,并且作战节奏不断挑战,我们必须通过保持其武器平台的全面运转并避免误诊和不必要的停机时间来为战机提供一切优势,这不利地影响了我们国家的战备和战斗优势。本文介绍了在不同维护级别,可能的根本原因以及减少和缓解措施的建议中对组件进行错误诊断的一些类型和来源,包括ATE在平台支持结构中作为战斗力倍增器的作用及其(常常被误解)对减轻误诊和NEOF的影响。

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