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System fault-tolerance analysis of COTS-based satellite on-board computers

机译:基于COTS的卫星车载计算机的系统容错分析

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Fault-tolerance analysis reveals possible system behavior under the influence of faults. Such analysis is essential for satellites where faults might be caused by space radiation and autonomous recovery is needed. In this paper we present a statistical simulation approach for fault-tolerance analysis of satellite On-Board Computers (OBCs) that are based on Commercial Off-The-Shelf (COTS) components. Since the logic level of COTS electronics is unknown to satellite designers, a new higher-level fault-tolerance analysis is required. We propose such technique that relies on OBC modeling and fault modeling, based on the modeling principle of Single-Event Upsets (SEUs). For the first time we can compare the efficiency of fault-tolerance techniques implemented in software and Field-Programmable Gate Array (FPGA). In addition, our approach enables to analyze system fault-tolerance at early development stages. In a case study the approach is applied to an OBC with a Microsemi SmartFusion SoC, that executes a satellite attitude control algorithm. The gained statistical simulation results enabled 50% reduction in the hardware overhead of the implemented memory scrubbing technique without loss in fault-tolerance. Our method revealed critical fault-tolerance drawbacks of the initial system design that could have lead to satellite mission failure.
机译:容错分析揭示了在故障影响下可能的系统行为。对于可能由空间辐射引起故障并需要自动恢复的卫星而言,这种分析至关重要。在本文中,我们提出了一种基于统计模型的统计仿真方法,用于基于商用现货(COTS)组件的卫星车载计算机(OBC)的容错分析。由于卫星设计人员不知道COTS电子设备的逻辑级别,因此需要进行新的更高级别的容错分析。我们基于单事件翻转(SEU)的建模原理,提出了一种依靠OBC建模和故障建模的技术。我们首次可以比较以软件和现场可编程门阵列(FPGA)实施的容错技术的效率。此外,我们的方法可以在开发的早期阶段分析系统的容错能力。在案例研究中,该方法应用于带有Microsemi SmartFusion SoC的OBC,该SoC执行卫星姿态控制算法。获得的统计仿真结果使实现的内存清理技术的硬件开销减少了50%,而不会降低容错能力。我们的方法揭示了初始系统设计中的严重容错缺陷,这些缺陷可能导致卫星任务失败。

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