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A power macromodeling technique based on power sensitivity

机译:基于功率灵敏度的功率宏建模技术

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We propose a novel power macromodeling technique for high level power estimation based on power sensitivity. Power sensitivity defines the change in average power due to changes in the input signal specification. The contribution of this work is that we can use only a few points to construct a complicated power surface in the specification-space. With such a power surface, we can easily obtain the power dissipation under any distribution of primary inputs. The advantages of our technique are two-fold. First, the required parameters corresponding to each representative point can be efficiently obtained by only one symbolic power estimation run or by only one Monte Carlo based statistical power estimation process. This stems from the fact that power sensitivity can be obtained as a by-product of probabilistic or statistical power estimation runs. Second, the memory requirements for the macromodel are reduced to O(dn), where n is the number of primary inputs of a circuit and d is the number of representative points (d can be as small as 1 in some cases). Results on a number of benchmark circuits demonstrate the effectiveness of our technique.
机译:我们提出了一种新的基于功率灵敏度的功率宏建模技术,用于高级功率估计。功率灵敏度定义了由于输入信号规格变化而引起的平均功率变化。这项工作的贡献在于,我们仅可以使用几个点就可以在规范空间中构造一个复杂的电源表面。有了这样的电源表面,我们可以轻松地获得任何主要输入分布下的功耗。我们技术的优点是双重的。首先,仅通过一个符号功率估计运行或仅通过一个基于蒙特卡洛的统计功率估计过程就可以有效地获得与每个代表点相对应的所需参数。这源于以下事实:可以将功率灵敏度作为概率或统计功率估计运行的副产品获得。其次,将宏模型的内存需求降低为O(dn),其中n是电路的主要输入数量,d是代表点的数量(某些情况下d可以小到1)。许多基准电路的结果证明了我们技术的有效性。

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