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首页> 外文期刊>Electronics >Evaluation by Neutron Radiation of the NMR-MPar Fault-Tolerance Approach Applied to Applications Running on a 28-nm Many-Core Processor
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Evaluation by Neutron Radiation of the NMR-MPar Fault-Tolerance Approach Applied to Applications Running on a 28-nm Many-Core Processor

机译:通过中子辐射评估NMR-MPar容错方法在运行于28nm多核处理器上的应用中的应用

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摘要

Currently, there is a special interest in validating the use of Commercial-Off-The-Shelf (COTS) multi/many-core processors for critical applications thanks to their high performance, low power consumption and affordability. However, the continuous shrinking of transistor geometry and the increasing complexity of these devices dramatically affect their sensitivity to natural radiation, and thus diminish their reliability. One of the most common effects produced by natural radiation is the Single Event Upset which is the bit-flip of a memory content producing unexpected results at application-level. For this reason, manufacturers and users implement hardware and software error-mitigation techniques on multi/many-core processors. In this context, the present work aims at evaluating a new fault-tolerance approach based on N-Modular redundancy (NMR) and partitioning called NMR-MPar by means of 14 MeV neutron radiation ground testing in order to emulate the effects of high-energy neutrons present at avionics altitudes. For evaluation purposes, a case-study is implemented on the 28 nm CMOS KALRAY MPPA-256 many-core processor running two complementary benchmarks applications: a distributed Matrix Multiplication and the Travel Salesman Problem. Radiation experiments were conducted in GENEPI2 particle-accelerator. The correctness of the results of the application when an error is detected confirms the approach’s effectiveness and boosts their usage on avionics applications.
机译:当前,由于它们的高性能,低功耗和可负担性,对于在关键应用中使用商用现货(COTS)多核/多核处理器特别感兴趣。然而,晶体管几何形状的不断缩小和这些器件的日益复杂化极大地影响了其对自然辐射的敏感性,从而降低了其可靠性。自然辐射产生的最常见影响之一是单事件翻转,这是内存内容的位翻转,在应用程序级别产生意外结果。因此,制造商和用户在多核/多核处理器上实施了硬件和软件错误缓解技术。在这种情况下,本工作旨在通过14 MeV中子辐射地面测试评估一种基于N-模块化冗余(NMR)和分区(称为NMR-MPar)的新容错方法,以模拟高能效应中子存在于航空电子高度。为了进行评估,在运行两个互补基准应用程序的28 nm CMOS KALRAY MPPA-256多核处理器上实施了案例研究,即分布式矩阵乘法和Travel Salesman问题。在GENEPI2粒子加速器中进行了辐射实验。检测到错误后,应用程序结果的正确性将确认该方法的有效性,并提高其在航空电子应用程序中的使用率。

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