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Advanced model-based FDIR techniques for aerospace systems: Today challenges and opportunities

机译:用于航空航天系统的基于模型的高级FDIR技术:当今的挑战和机遇

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This paper discusses some trends and recent advances in model-based Fault Detection, Isolation and Recovery (FDIR) for aerospace systems. The FDIR challenges range from pre-design and design stages for upcoming and new programs, to improvement of the performance of in-service flying systems. For space missions, optimization of flight conditions and safe operation is intrinsically related to GNC (Guidance, Navigation & Control) system of the spacecraft and includes sensors and actuators monitoring. Many future space missions will require autonomous proximity operations including fault diagnosis and the subsequent control and guidance recovery actions. For upcoming and future aircraft, one of the main issues is how early and robust diagnosis of some small and subtle faults could contribute to the overall optimization of aircraft design. This issue would be an important factor for anticipating the more and more stringent requirements which would come in force for future environmentally-friendlier programs. The paper underlines the reasons for a widening gap between the advanced scientific FDIR methods being developed by the academic community and technological solutions demanded by the aerospace industry.
机译:本文讨论了航天系统基于模型的故障检测,隔离和恢复(FDIR)的一些趋势和最新进展。 FDIR面临的挑战包括针对即将到来的计划和新计划的预设计和设计阶段,以及改善在役飞行系统的性能。对于太空任务,飞行条件的优化和安全操作与航天器的GNC(指导,导航与控制)系统本质上相关,并且包括传感器和执行器监控。未来许多太空任务将需要自主的近距离操作,包括故障诊断以及随后的控制和制导恢复行动。对于即将到来的和未来的飞机,主要问题之一是对某些小而细微的故障进行早期和可靠的诊断如何有助于飞机设计的整体优化。这个问题将成为预测将来对环境友好型计划生效的越来越严格的要求的重要因素。该论文强调了学术界正在开发的先进科学FDIR方法与航空航天业所要求的技术解决方案之间差距越来越大的原因。

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