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Statistical estimation of average power dissipation in CMOS VLSI circuits using nonparametric techniques

机译:使用非参数技术的CMOS VLSI电路中平均功耗的统计估计

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We present a new statistical technique for estimation of average power dissipation in digital circuits. Present statistical techniques estimate the average power based on the assumption that the power distribution can be characterized by a preassumed function. A large error can result if the assumption is not met. To overcome this problem, we propose a nonparametric technique in which no distribution function needs to be assumed. A set of distribution-independent upper and lower bounds of the average power are developed using the properties derived from the order statistics. A stopping criterion is designed based on the bounds for a desired percentage error with a specified confidence level. Since it does not resort to assuming any particular distribution function, the technique can be applied to all circuits irrespective of their power distributions. Comparison is made against the present statistical technique based on the central limit theorem. Experimental results show that the proposed technique is much more accurate and robust, yet the efficiency characteristic of statistical techniques is still preserved.
机译:我们提出了一种新的统计技术,用于估计数字电路中的平均功耗。当前的统计技术基于功率分布可以由预设函数表征的假设来估计平均功率。如果不满足该假设,则可能导致较大的错误。为了克服这个问题,我们提出了一种非参数技术,其中不需要假设分布函数。使用从阶次统计中得出的属性,可以开发出一组平均功率的与分布无关的上限和下限。基于具有指定置信度的期望百分比误差的范围来设计停止标准。由于它不求助于任何特定的分布函数,因此该技术可以应用于所有电路,而与它们的功率分布无关。基于中心极限定理与目前的统计技术进行比较。实验结果表明,该技术具有较高的准确性和鲁棒性,但仍保留了统计技术的效率特征。

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