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首页> 外文期刊>EURASIP journal on embedded systems >A Model-Driven Approach for Hybrid Power Estimation in Embedded Systems Design
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A Model-Driven Approach for Hybrid Power Estimation in Embedded Systems Design

机译:嵌入式系统设计中一种模型驱动的混合功率估计方法

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摘要

As technology scales for increased circuit density and performance, the management of power consumption in system-on-chip (SoC) is becoming critical. Today, having the appropriate electronic system level (ESL) tools for power estimation in the design flow is mandatory. The main challenge for the design of such dedicated tools is to achieve a better tradeoff between accuracy and speed. This paper presents a consumption estimation approach allowing taking the consumption criterion into account early in the design flow during the system cosimulation. The originality of this approach is that it allows the power estimation for both white-box intellectual properties (IPs) using annotated power models and black-box IPs using standalone power estimators. In order to obtain accurate power estimates, our simulations were performed at the cycle-accurate bit-accurate (CABA) level, using SystemC. To make our approach fast and not tedious for users, the simulated architectures, including standalone power estimators, were generated automatically using a model driven engineering (MDE) approach. Both annotated power models and standalone power estimators can be used together to estimate the consumption of the same architecture, which makes them complementary. The simulation results showed that the power estimates given by both estimation techniques for a hardware component are very close, with a difference that does not exceed 0.3%. This proves that, even when the IP code is not accessible or not modifiable, our approach allows obtaining quite accurate power estimates that early in the design flow thanks to the automation offered by the MDE approach.
机译:随着技术的扩展以增加电路密度和性能,片上系统(SoC)中的功耗管理变得至关重要。如今,在设计流程中必须具有合适的电子系统级(ESL)工具来进行功率估算。设计此类专用工具的主要挑战是在精度和速度之间取得更好的折衷。本文提出了一种消耗估算方法,该方法允许在系统协同仿真的设计流程中尽早考虑消耗标准。这种方法的独创性在于,它允许使用带注释的功率模型对白盒知识产权(IP)和使用独立功率估计器的黑盒IP进行功率估计。为了获得准确的功率估算,我们使用SystemC在周期精确的比特精确(CABA)级别上进行了仿真。为了使我们的方法快速且对用户不那么繁琐,已使用模型驱动工程(MDE)方法自动生成了包括独立功率估算器在内的仿真架构。带注释的功耗模型和独立功耗估算器可一起用于估算同一架构的功耗,这使它们相互补充。仿真结果表明,两种估算技术对硬件组件的功率估算都非常接近,相差不超过0.3%。这证明,即使IP代码不可访问或不可修改,我们的方法也可以借助MDE方法提供的自动化,在设计流程的早期获得相当准确的功耗估算。

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  • 来源
    《EURASIP journal on embedded systems》 |2011年第2011期|p.569031.1-569031.15|共15页
  • 作者单位

    INRIA Lille Nord Europe-LIFL-USTL-CNRS, 40 Avenue Halley, 59650 Villeneuve d'Ascq, France;

    LAMIH, University of Valenciennes, Le Mont Houy, 59313 Valenciennes, France;

    INRIA Lille Nord Europe-LIFL-USTL-CNRS, 40 Avenue Halley, 59650 Villeneuve d'Ascq, France;

    INRIA Lille Nord Europe-LIFL-USTL-CNRS, 40 Avenue Halley, 59650 Villeneuve d'Ascq, France;

    LIP2 Laboratory, Faculty of Science of Tunis, 2092 Manar 2 Tunis, Tunisia,Institut National des Sciences Appliquees etde Technologie (INSAT), B.P. 676, 1080 Tunis Cedex, Tunisia;

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