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首页> 外文期刊>IEICE Transactions on Communications >Operation Mode Based High-level Switching Activity Analysis For Power Estimation Of Digital Circuits
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Operation Mode Based High-level Switching Activity Analysis For Power Estimation Of Digital Circuits

机译:基于工作模式的高级开关活动分析,用于数字电路的功率估计

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摘要

As semiconductor processing technology advances, complex, high density circuits can be integrated in a chip. However, increasing energy consumption is becoming one of the most important limiting factors. Power estimation at the early stage of design is essential since design changes at later stages may significantly lengthen the design period and increase the costs. For efficient power estimation, we analyze the "key" control signals of a digital circuit and develop power models for several operational modes. The trade-off between accuracy and complexity can be made by choosing the number and the complexity of the power models. When compared with those of logic simulation based estimation, experimental results show that 13 to 15 times faster power estimation with an estimation error of about 5% is possible. We have also developed new logic-level power modeling techniques in which logic gates are levelized and several levels are selected to build power model tables. This table based method shows significant improvement in estimation accuracy and a slight improvement in efficiency when compared to a well-known previous method. The average estimation error has been reduced from 13.3% to 3.8%.
机译:随着半导体处理技术的发展,复杂的高密度电路可以集成在芯片中。但是,增加能源消耗已成为最重要的限制因素之一。在设计的早期阶段进行功率估算至关重要,因为在后期进行设计更改可能会大大延长设计周期并增加成本。为了进行有效的功率估算,我们分析了数字电路的“关键”控制信号,并针对几种工作模式开发了功率模型。可以通过选择功率模型的数量和复杂度来在精度和复杂度之间进行权衡。与基于逻辑仿真的估计相比,实验结果表明,功率估计可以快13至15倍,而估计误差约为5%。我们还开发了新的逻辑级功率建模技术,其中对逻辑门进行了均衡,并选择了多个级别来构建功率模型表。与众所周知的先前方法相比,该基于表的方法显示出估计准确性的显着提高,效率略有提高。平均估计误差已从13.3%降低到3.8%。

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