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Model-based FDIR and Fault Accommodation for a Rendezvous Mission around the Mars Planet: the Mars Sample Return Case

机译:基于模型的FDIR和故障住宿,为Mars Planet周围的Rendezvous任务:Mars样本返回案例

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The research work presented in the paper addresses the design of a model-based fault diagnosis and fault recovery system for any faults occurring in the actuator and sensor units of the chaser spacecraft of the ESA Mars Sample Return (MSR) mission. Key features of the proposed method are the use of a parity space and covariance-based strategy with jointly a H_∞ observer for fault diagnosis of sensor faults, a H_∞/H_- filter for robust fault detection of actuator faults and a bank of unknown input observers jointly used with a dot product of vectors strategy, for actuator faults. For fault accommodation, a "retreat" FDIR strategy scheduled by the FDI unit, is retained. The proposed FDIR architecture obeys to a hierarchical one and fits the industrial requirements. Especially, it is compliant with the Aurora avionics architecture. A simulation campaign, based on a nonlinear high-fidelity simulator developed by GMV space and Thales Alenia Space industries, is conducted under highly realistic conditions.
机译:本文提出的研究工作解决了欧安全安局MARS样本返回(MSR)任务的追逐者和传感器单元中发生的模型的故障诊断和故障恢复系统的设计。所提出的方法的主要特征是使用奇偶校验空间和基于协方差的策略,共同A H_6观察者进行传感器故障的故障诊断,AH_∞/ H_-过滤器,用于执行器故障的强大故障检测和未知的银行输入观察者共同使用的矢量策略的点产品,用于执行器故障。对于故障住宿,保留了由FDI单元安排的“退缩”FDIR策略。提议的FDIR建筑致致致力于分层,符合工业要求。特别是,它符合Aurora航空电子架构。基于GMV空间和Alenia Space Industries开发的非线性高保真模拟器的仿真活动在高度现实的条件下进行。

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