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IMA aircraft improvements

机译:IMA飞机的改进

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摘要

Integrated modular avionics (IMA) is being suggested as the means by which new capabilities can be deployed on aircraft at an affordable cost. RTCA SC-200 is presently considering the guidance document for IMA. All of the functionality that IMA offers can be achieved through a conventional federated architecture; however, the cost, size, and weight penalties of the federated solution make it economically infeasible. IMA is seen as the way forward. It is assuming greater importance as the aircraft industry transitions to commercial-off-the-shelf (COTS) technology with its attendant obsolescence and reliability concerns. IMA may be one of the most cost-effective ways by which rapid obsolescence can be managed. Ironically, this move to COTS is also the greatest threat to IMA systems. IMA achieves reductions in size, cost, and weight by providing a set of flexible hardware and software resources that can be statically or dynamically mapped to a set of required avionics functional capabilities. This introduces a number of new complexities such as mixed criticalities and reconfiguration. We do not address these issues herein. Rather we discuss the mechanisms by which electronics degrades and how a classical safety assessment of a reconfigurable IMA system can be ified by this degradation. We argue that, with the advent of COTS, it is no longer justifiable to consider that electronics has an effectively constant failure rate. Physical considerations suggest that electronics failure occurs when environmental and operating stress causes the accumulation of damage to the underlying structures to exceed the threshold strength of the constituent materials and interfaces. Finally, we suggest how finite-life electronics effects may be mitigated.
机译:有人建议使用集成式模块化航空电子设备(IMA),以一种可承受的价格在飞机上部署新功能。 RTCA SC-200目前正在考虑IMA的指导文件。 IMA提供的所有功能都可以通过传统的联合体系结构来实现。但是,联邦解决方案的成本,大小和重量损失使其在经济上不可行。 IMA被视为前进的道路。随着航空业向过时的商用(COTS)技术过渡以及随之而来的过时和可靠性问题,它变得越来越重要。 IMA可能是管理快速过时的最具成本效益的方法之一。具有讽刺意味的是,向COTS过渡也是对IMA系统的最大威胁。 IMA通过提供一组灵活的硬件和软件资源来实现尺寸,成本和重量的减少,这些资源可以静态或动态地映射到一组所需的航空电子功能。这引入了许多新的复杂性,例如混合关键性和重新配置。我们不在此解决这些问题。相反,我们讨论了电子器件退化的机制,以及如何通过这种退化来确定可重构IMA系统的经典安全评估。我们认为,随着COTS的出现,不再有理由认为电子产品具有有效的恒定故障率。物理考虑表明,当环境和工作压力导致对下层结构的破坏积累超过组成材料和界面的阈值强度时,会发生电子故障。最后,我们建议如何减轻有限寿命的电子效应。

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