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Hierarchical Modeling of Automotive Sensor Front-Ends for Structural Diagnosis of Aging Faults

机译:汽车传感器前端的分层建模,用于衰老断层的结构诊断

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The semiconductor industry for automotive applications is growing rapidly. This is because advanced electronics is now being developed to monitor and control many vital functions previously handled purely mechanical. In addition hybrid and pure electrical cars are emerging. Parts of these electronic systems have strict safety-critical requirements, while operating in a harsh environment. Although functional diagnosis is currently the norm, many occurring faults during lifetime, e.g. due to aging, cannot be diagnosed. This poses serious threats during operation as correction for dependability is not possible in this case. This suggests the introduction of structural diagnosis techniques. Major problem is that a number of different hierarchies have to be considered and reuse of reliability data at different hierarchies should be possible. This paper investigates a new approach for the development of dependable analogue/mixed-signal car front-ends, by interfacing aging models between different hierarchies enabling structural diagnosis, and explicitly using simultaneously design and simulation data as well as built-in observation measurements at all hierarchies.
机译:汽车应用的半导体行业正在迅速增长。这是因为现在正在开发先进的电子设备来监控和控制以前纯机械处理的许多重要功能。此外,混合动力和纯电动汽车正在出现。这些电子系统的一部分具有严格的安全关键要求,同时在恶劣的环境中运行。虽然功能诊断目前是常态,但寿命期间发生了许多发生故障,例如,由于衰老,不能被诊断出来。在这种情况下,这在操作期间构成严重威胁,因为在这种情况下无法校正。这表明引入结构诊断技术。主要问题是必须考虑许多不同的层次结构并在不同层次结构下重用可靠性数据。本文通过在不同层次结构之间接口老化模型来调查可靠性模拟/混合信号车前端的新方法,从而实现结构诊断,并明确使用同时设计和仿真数据以及内置观察测量层次结构。

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