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Analysis of the Critical Bits of a RISC-V Processor Implemented in an SRAM-Based FPGA for Space Applications

机译:基于SRAM的FPGA实现的RISC-V处理器的临界位分析,用于空间应用

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One of the traditional issues in space missions is the reliability of the electronic components on board spacecraft. There are numerous techniques to deal with this, from shielding and rad-hard fabrication to ad-hoc fault-tolerant designs. Although many of these solutions have been extensively studied, the recent utilization of FPGAs as the target architecture for many electronic components has opened new possibilities, partly due to the distinct nature of these devices. In this study, we performed fault injection experiments to determine if a RISC-V soft processor implemented in an FPGA could be used as an onboard computer for space applications, and how the specific nature of FPGAs needs to be tackled differently from how ASICs have been traditionally handled. In particular, in this paper, the classic definition of the cross-section is revisited, putting into perspective the importance of the so-called "critical bits" in an FPGA design.
机译:太空任务中的传统问题之一是船上航天器上电子元件的可靠性。 从屏蔽和RAD硬制造到ad-hoc容错设计,有许多技术可以处理这一点。 尽管许多这些解决方案已经过广泛研究,但是最近利用FPGA作为许多电子元件的目标架构已经开辟了新的可能性,部分原因是这些装置的不同性质。 在这项研究中,我们执行了故障注入实验,以确定FPGA中实现的RISC-V软处理器是否可以用作空间应用的车载计算机,以及如何与ASICS如何不同地解决FPGA的具体性质 传统上处理。 特别是,在本文中,重新审视了横截面的经典定义,透视FPGA设计中所谓的“临界位”的重要性。

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