Sustaining moore's law in embedded computing through probabilistic and approximate design: retrospects and prospects

K. Palem, Lakshmi N. Chakrapani, Z. Kedem, L. Avinash, Kirthi Krishna Muntimadugu
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引用次数: 77

Abstract

The central theme of our work is the probabilistic and approximate design of embedded computing systems. This novel approach consists of two distinguishing aspects: (i) the design and implementation of embedded systems, using components which are susceptible to perturbations from various sources and (ii) a design methodology which consists of an exploration of a design space which characterizes the trade-off between quality of output and cost, to implement high performance and low energy embedded systems. In contrast with other work, our design methodology does not attempt to correct the errors introduced by components which are susceptible to perturbations, instead we design "good enough" systems. Our work has the potential to address challenges and impediments to Moore's law arising from material properties and manufacturing difficulties, which dictate that we shift from the current-day deterministic design paradigm to statistical and probabilistic designs of the future. In this paper, we provide a broad overview of our work on probabilistic and approximate design, present novel results in approximate arithmetic and its impact on digital signal processing algorithms, and sketch future directions for research.
通过概率和近似设计在嵌入式计算中维持摩尔定律:回顾与展望
我们工作的中心主题是嵌入式计算系统的概率和近似设计。这种新颖的方法由两个不同的方面组成:(i)嵌入式系统的设计和实现,使用易受各种来源干扰的组件;(ii)设计方法,包括探索设计空间,其特征是输出质量和成本之间的权衡,以实现高性能和低能耗的嵌入式系统。与其他工作相比,我们的设计方法并不试图纠正易受扰动影响的组件引入的错误,而是设计“足够好”的系统。我们的工作有可能解决由材料特性和制造困难引起的摩尔定律的挑战和障碍,这决定了我们从当前的确定性设计范式转向未来的统计和概率设计。在本文中,我们提供了概览我们在概率和近似设计方面的工作,提出了近似算法的新结果及其对数字信号处理算法的影响,并概述了未来的研究方向。
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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