Design, Verification, Test and In-Field Implications of Approximate Computing Systems

A. Bosio, S. Carlo, P. Girard, Ernesto Sánchez, A. Savino, L. Sekanina, Marcello Traiola, Z. Vašíček, A. Virazel
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引用次数: 7

Abstract

Today, the concept of approximation in computing is becoming more and more a “hot topic” to investigate how computing systems can be more energy efficient, faster, and less complex. Intuitively, instead of performing exact computations and, consequently, requiring a high amount of resources, Approximate Computing aims at selectively relaxing the specifications, trading accuracy off for efficiency. While Approximate Computing gives several promises when looking at systems' performance, energy efficiency and complexity, it poses significant challenges regarding the design, the verification, the test and the in-field reliability of Approximate Computing systems. This tutorial paper covers these aspects leveraging the experience of the authors in the field to present state-of-the-art solutions to apply during the different development phases of an Approximate Computing system.
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近似计算系统的设计,验证,测试和现场影响
今天,计算中的近似概念越来越成为研究如何使计算系统更节能、更快和更简单的“热门话题”。直观地说,近似计算不是执行精确的计算,因此需要大量的资源,而是有选择地放松规范,以准确性为代价换取效率。虽然近似计算在系统性能、能源效率和复杂性方面给出了一些承诺,但它在近似计算系统的设计、验证、测试和现场可靠性方面提出了重大挑战。本教程涵盖了这些方面,利用作者在该领域的经验,提出了在近似计算系统的不同开发阶段应用的最先进的解决方案。
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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