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首页> 外文期刊>ACM Transactions on Design Automation of Electronic Systems >ILP Models for Simultaneous Energy and Transient Power Minimization during Behavioral Synthesis
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ILP Models for Simultaneous Energy and Transient Power Minimization during Behavioral Synthesis

机译:行为综​​合过程中同时降低能量和暂态功率的ILP模型

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摘要

In low-power design for battery-driven portable applications, the reduction of peak power, peak power differential, cycle difference power, average power and energy are equally important. These are different forms of dynamic power dissipation of a CMOS circuit, which is predominant compared to static power dissipation for higher switching activity The peak power, the cycle difference power, and the peak power differential drive the transient characteristic of a CMOS circuit. In this article, we propose an ILP-based framework for the reduction of energy and transient power through datapath scheduling during behavioral synthesis. A new metric called "modified cycle power function" (CPF{sup}*) is denned that captures the above power characteristics and facilitates integer linear programming formulations. The ILP-based datapath scheduling schemes with CPF{sup}* as objective function are developed assuming three modes of datapath operation, such as, single supply voltage and single frequency (SVSF), multiple supply voltages and dynamic frequency clocking (MVDFC), and multiple supply voltages and multicycling (MVMC). We conducted experiments on selected high-level synthesis benchmark circuits for various resource constraints and estimated power, energy and energy delay product for each of them. Experimental results show that significant reductions in power, energy and energy delay product can be obtained.
机译:在电池驱动的便携式应用的低功耗设计中,降低峰值功率,峰值功率差,周期差功率,平均功率和能量同样重要。这些是CMOS电路动态功耗的不同形式,与静态功耗相比,它们具有更高的开关活性,峰值功率,周期差功率和峰值功率差驱动CMOS电路的瞬态特性。在本文中,我们提出了一个基于ILP的框架,用于在行为综合过程中通过数据路径调度来减少能量和瞬态功率。定义了一种新的度量标准,称为“修改后的循环幂函数”(CPF {sup} *),它可以捕获上述功率特征并简化整数线性规划公式。假设数据路径操作的三种模式,例如单电源电压和单频率(SVSF),多电源电压和动态频率时钟(MVDFC),以及基于CLP {sup} *作为目标函数的基于ILP的数据路径调度方案,将被开发出来。多电源电压和多循环(MVMC)。我们针对各种资源约束条件对选定的高级综合基准电路进行了实验,并针对每种电路估算了功率,能量和能量延迟积。实验结果表明,可以显着降低功率,能量和能量延迟积。

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