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Enabling accurate modeling of power and energy consumption in an ARM-based System-on-Chip

机译:在基于ARM的片上系统中实现功耗和能耗的精确建模

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Motivated by the importance of energy consumption in mobile electronics this work describes a methodology developed at ARM for power modeling and energy estimation in complex System-on-Chips (SoCs). The approach is based on developing statistical power models for the system components using regression analysis and extends previous work that has mainly focused on microprocessor cores. The power models are derived from post-layout power-estimation data, after exploring the high-level activity space of each component. The models are then used to conduct an energy analysis based on realistic use cases including web browser benchmarks and multimedia algorithms running on a dual-core processor under Linux. The obtained results show the effects of different hardware configurations on power and energy for a given application and that system level energy consumption analysis can help the design team to make informed architectural trade-offs during the design process.
机译:受移动电子设备中能耗重要性的启发,这项工作描述了ARM开发的一种用于在复杂的片上系统(SoC)中进行功率建模和能量估计的方法。该方法基于使用回归分析为系统组件开发统计能力模型,并扩展了以前主要集中在微处理器内核上的工作。在探索每个组件的高级活动空间之后,功率模型是从布局后功率估计数据得出的。然后,这些模型用于基于实际用例进行能耗分析,包括Web浏览器基准测试和在Linux下在双核处理器上运行的多媒体算法。获得的结果显示了给定应用程序中不同硬件配置对功率和能量的影响,并且系统级能耗分析可以帮助设计团队在设计过程中做出明智的架构折衷。

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