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QAMR: an Approximation-Based Fully Reliable TMR Alternative for Area Overhead Reduction

机译:QAMR:基于近似值的完全可靠的TMR替代方案,可减少区域开销

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In the last decade, Approximate Computing has become a trend topic for several error tolerant applications. In this context, the use of such paradigm for reducing the area and power cost of conventional fault tolerant schemes (i.e. Triple Modular Redundancy) has been investigated recently. Unfortunately, existing solutions cannot ensure the same level of reliability compared to conventional TMR. In this paper, we propose a novel fully robust approximation-based solution suitable for safety-critical applications that can reduce the cost compared to conventional TMR structures. This solution is based on the use of four approximate modules with an overall smaller area overhead compared to a TMR made of three precise modules. The main constraint is that, for a given output of the precise module, at least three approximate modules (among four) can feed the voter with the same output. In order to build our Quadruple Approximate Modular Redundancy (QAMR) structure, we use a simple and random process whose goal is to remove different outputs with the corresponding fan-in logic from each approximate module in such a way that the above constraint is satisfied. The majority voter and its mode of operation remains the same as in the TMR. To validate our approach, we conducted experiments and results demonstrate that it is possible to achieve the fault tolerance of a full TMR approach while reducing the area overhead up to 24.28%.
机译:在过去的十年中,近似计算已成为一些容错应用程序的趋势主题。在这种情况下,最近已经研究了使用这种范例来减小常规容错方案(即三重模块冗余)的面积和功率成本。不幸的是,与传统的TMR相比,现有的解决方案无法确保相同水平的可靠性。在本文中,我们提出了一种适用于安全关键型应用的新颖的完全健壮的基于近似的解决方案,与传统的TMR结构相比,该解决方案可以降低成本。该解决方案基于四个近似模块的使用,与三个精确模块构成的TMR相比,总体开销较小。主要限制是,对于精确模块的给定输出,至少三个近似模块(其中四个)可以为选民提供相同的输出。为了构建四重近似模块化冗余(QAMR)结构,我们使用了一个简单且随机的过程,其目的是通过满足上述约束的方式,从每个近似模块中删除具有相应扇入逻辑的不同输出。多数选民及其操作方式与TMR中的相同。为了验证我们的方法,我们进行了实验,结果表明,有可能实现完全TMR方法的容错能力,同时将面积开销减少多达24.28%。

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