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Power modeling and estimation during ADL-driven embedded processor design

机译:ADL驱动嵌入式处理器设计中的功率建模与估计

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Rising concern for thermal stress and tight energy constraints have forced designers to consider power as a design criterion from early design phase. Despite many advances in highlevel power estimation techniques, there is a lack of generic power estimation capabilities in prominent high-level design flows. In this paper we propose power modeling and estimation techniques during Architecture Description Language (ADL)-based high-level embedded processor design. The first technique is based on accurate switching activity extraction from cycle-accurate instruction-set simulation. The second technique is developed through unit-level power modeling for ADL architecture construct. Multivariate linear regression is used to characterize the unit power model. Experiments are performed on a RISC processor using state-of-the-art high-level processor design flow to demonstrate the accuracy and efficiency of the proposed techniques.
机译:对热应力和紧密能源约束的关注令人担忧,使设计人员能够考虑从早期设计阶段的设计标准。尽管高级功率估算技术具有许多进展,但突出的高级设计流程中缺乏通用功率估算能力。本文在架构描述语言(ADL)的高级嵌入式处理器设计中提出了电力建模和估计技术。第一技术是基于循环准确指令集模拟的精确切换活动提取。第二种技术是通过用于ADL架构构造的单位级功率建模而开发的。多变量线性回归用于表征单位功率模型。使用最先进的高级处理器设计流程对RISC处理器进行实验,以展示所提出的技术的准确性和效率。

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