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A structure-oriented power modeling technique for macrocells

机译:面向宏单元的面向结构的功率建模技术

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To characterize the power consumption of a macrocell, a general method involves recording the power consumption of all possible input transition events in the look-up tables. However, though this approach is accurate, the size of the table becomes very large. In this paper, we propose a new power modeling technique that takes advantage of the structural information of a macrocell. In this approach, a subset of primary inputs and internal nodes in the macrocell are selected as the state variables to build a state transition graph (STG). These state variables can model the steady-state transitions completely. Moreover, by selecting the characterization patterns properly, the STG can also model the glitch power in the macrocell accurately. To further simplify the complexity of the STG, an incomplete power modeling technique is presented. Without losing much accuracy, the property of compatible patterns is exploited for a macrocell to further reduce the number of edges in the corresponding STG. Experimental results show that our modeling techniques can provide SPICE-like accuracy, while the size of the look-up table is significantly reduced.
机译:为了表征宏单元的功耗,一种通用方法包括在查找表中记录所有可能的输入转换事件的功耗。但是,尽管这种方法是准确的,但表的大小却非常大。在本文中,我们提出了一种利用宏单元结构信息的新功率建模技术。在这种方法中,选择宏单元中主要输入和内部节点的子集作为状态变量,以建立状态转换图(STG)。这些状态变量可以完全模拟稳态转换。此外,通过适当地选择表征模式,STG还可以准确地对宏小区中的毛刺功率进行建模。为了进一步简化STG的复杂性,提出了一种不完整的功率建模技术。在不损失太多准确性的情况下,将兼容模式的属性用于宏小区,以进一步减少相应STG中的边缘数量。实验结果表明,我们的建模技术可以提供类似SPICE的准确性,同时大大减少了查询表的大小。

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