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Thermal Neutrons: a Possible Threat for Supercomputers and Safety Critical Applications

机译:热中子:超级计算机和安全关键应用的潜在威胁

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The high performance, high efficiency, and low cost of Commercial Off-The-Shelf (COTS) devices make them attractive for applications with strict reliability constraints. Today, COTS devices are adopted in HPC and safety-critical applications such as autonomous driving. Unfortunately, the cheap natural Boron widely used in COTS chip manufacturing process makes them highly susceptible to thermal (low energy) neutrons. In this paper, we demonstrate that thermal neutrons are a significant threat to COTS device reliability. For our study, we consider an AMD APU, three NVIDIA GPUs, an Intel accelerator, and an FPGA executing a relevant set of algorithms. We consider different scenarios that impact the thermal neutron flux such as weather, concrete walls and floors, and HPC liquid cooling systems. We show that thermal neutrons FIT rate could be comparable to the high energy neutron FIT rate.
机译:商用现货(COTS)器件的高性能,高效率和低成本特性使其对于具有严格可靠性约束的应用具有吸引力。如今,COTS设备已用于HPC和对安全至关重要的应用中,例如自动驾驶。不幸的是,广泛用于COTS芯片制造过程中的廉价天然硼使它们对热(低能量)中子高度敏感。在本文中,我们证明了热中子是对COTS设备可靠性的重大威胁。在我们的研究中,我们考虑一个AMD APU,三个NVIDIA GPU,一个Intel加速器和一个执行一组相关算法的FPGA。我们考虑了影响热中子通量的不同情况,例如天气,混凝土墙和地面以及HPC液体冷却系统。我们表明,热中子的FIT率可以与高能中子的FIT率相媲美。

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