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A Theoretical Framework for Probability Coefficients: A New Methodology for Fault Detection

机译:概率系数的理论框架:一种用于故障检测的新方法

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A new spectral method that eliminates the need of inner product evaluations in determination of signature of a combinational circuit realizing given Boolean function is described. The signature is obtained using probability coefficients of the function instead of conventional spectral signature. Theoretical relations for achievable computational advantage in terms of required additions in computing all 2n probability coefficients of "n" variable function have been developed. It is shown that for n ≥ 5, only 50% additions are needed to compute all probability coefficients as compared to spectral coefficients. The fault detection techniques based on spectral signature can be used with probability signature also to offer computational advantage.
机译:描述了一种新的光谱方法,其消除了在确定给定布尔函数的组合电路签名中确定的内部产品评估的需要。使用函数的概率系数而不是传统的光谱签名获得签名。已经开发了在计算所有2N概率系数的所需添加方面实现的可实现的计算优势的理论关系。结果表明,对于N≥5,与光谱系数相比,仅需要50%的添加来计算所有概率系数。基于光谱签名的故障检测技术可以与概率签名一起使用,也可以提供计算优势。

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