Emulation-based hierarchical fault-injection framework for coarse-to-fine vulnerability analysis of hardware-accelerated approximate algorithms

Ioannis Chadjiminas, Ioannis Savva, C. Kyrkou, M. Michael, T. Theocharides
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引用次数: 3

Abstract

This paper proposes a hierarchical fault injection emulation framework tailored to the structure of complex and large application-specific circuits, that performs vulnerability analysis of the system for single event upsets (SEUs) at different design granularities in real-time. In particular, the framework allows for efficient probabilistic modelling of the SEU impact, making it particularly applicable for hardware-accelerated approximate applications such as multimedia, computer vision and image/signal processing, due to its high processing speed and real-time capabilities. The framework is emulated on an FPGA-based platform and evaluated using a depth computation kernel, both in standalone manner as well as within a robotic obstacle avoidance application.
基于仿真的分层故障注入框架,用于硬件加速近似算法从粗到细的漏洞分析
本文提出了一种针对复杂大型应用电路结构的分层故障注入仿真框架,在不同设计粒度下对系统进行单事件异常(seu)的实时漏洞分析。特别是,该框架允许对SEU影响进行有效的概率建模,使其特别适用于硬件加速近似应用,如多媒体,计算机视觉和图像/信号处理,由于其高处理速度和实时能力。该框架在基于fpga的平台上进行了仿真,并使用深度计算内核进行了评估,既可以独立使用,也可以在机器人避障应用中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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