Towards digital circuit approximation by exploiting fault simulation

Marcello Traiola, A. Virazel, P. Girard, M. Barbareschi, A. Bosio
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引用次数: 7

Abstract

In the recent years, Approximate Computing (AxC) has emerged as a new paradigm for energy efficient design of Integrated Circuits (ICs). AxC is based on the intuitive observation that, while performing exact computation requires a high amount of resources, allowing a selective approximation or an occasional relaxation of the specifications can provide significant gains in area, performances and energy efficiency. This work focuses on a case study about functional approximation of digital circuits. The functional approximation aims at modifying the circuit structure so that the original function F will be replaced by G whose implementation leads to area/energy reduction at the cost of reduced accuracy (i.e., some errors can be observed at the outputs of G). In this paper, we investigate an approach for the functional approximation exploiting fault simulation. Preliminary results show the potentiality of this approach in terms of area reduction.
利用故障仿真实现数字电路逼近
近年来,近似计算(AxC)已成为集成电路(ic)节能设计的新范式。AxC基于直觉观察,虽然执行精确计算需要大量资源,但允许选择性近似或偶尔放宽规格可以在面积,性能和能源效率方面提供显着收益。本文以数字电路的泛函近似为例进行研究。泛函逼近的目的是修改电路结构,使原始函数F被G取代,其实现以降低精度为代价(即在G的输出处可以观察到一些误差)导致面积/能量的减少。在本文中,我们研究了一种利用故障模拟的泛函逼近方法。初步结果表明,这种方法在减少面积方面具有潜力。
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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