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Energy Efficiency with Runtime Models for Energy-aware Embedded Systems

机译:具有用于能量感知嵌入式系统的运行时模型的能效

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Reducing power consumption is an important design objective in energy-constrained embedded and mobile systems. Such systems must be designed to meet functional and often timing requirements facing the challenge of energy restriction. This paper presents a new approach for power management based on ZETA, a mathematical framework that utilizes computational and energy models to provide proofs for optimal clock rate control. Special runtime models are developed to provide optimal values for the CPU clock rate under real-time requirements. The method is suitable for embedded systems which utilize a single task real-time computational model and linear energy models. A special tool called CASTLE is developed to support this approach. CASTLE helps us integrate power management into the operating system or to automatically insert power management into the application code. The tool utilizes as input application-specific data which is conveyed via comments in the source file.
机译:降低功耗是能量受限嵌入式和移动系统中的重要设计目标。必须设计这些系统以满足功能和经常面临能量限制挑战的功能和经常定时要求。本文提出了一种基于Zeta的电源管理的新方法,该框架利用计算和能源模型提供最佳时钟速率控制的证据。开发特殊的运行时模型以在实时要求下为CPU时钟速率提供最佳值。该方法适用于利用单个任务实时计算模型和线性能量模型的嵌入式系统。开发了一种名为CASTLE的特殊工具以支持这种方法。 Castle帮助我们将电源管理集成到操作系统中或自动将电源管理插入应用程序代码。该工具利用作为输入应用程序的特定数据,该数据通过源文件中的注释传达。

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