自主系统可靠性评估与增强的挑战
计算机与社会
2019-09-09 v1 软件工程
摘要
当今先进信息物理系统及系统之系统的巨大复杂性和异构性,因采用前卫计算架构以在系统中运用基于人工智能的自主性而成倍增加。在此背景下,整个系统的可靠性伴随着针对自主系统目标应用和所采用硬件架构的失效安全、失效可操作模式的特定要求。本文概述了在由神经形态架构、近似计算架构、GPU、张量处理单元(TPU)和SoC FPGA等硬件主干支撑的自主系统中实现智能所面临的可靠性挑战。
引用
@article{arxiv.1909.03040,
title = {Challenges of Reliability Assessment and Enhancement in Autonomous Systems},
author = {Maksim Jenihhin and Matteo Sonza Reorda and Aneesh Balakrishnan and Dan Alexandrescu},
journal= {arXiv preprint arXiv:1909.03040},
year = {2019}
}
备注
The 32nd IEEE International Symposium on Defect and Fault Tolerance in VLSI and Nanotechnology Systems (DFT'19), October 2 - October 4, 2019, ESA-ESTEC and TU Delft, Netherlands