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Energy and Run Time Evaluation for Compiler Methods Using Dynamic Voltage- Frequency Scaling on XScale Architecture

机译:XScale架构上使用动态电压-频率缩放比例的编译器方法的能量和运行时间评估

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Energy Consumption is a key constraint in modern computing era. The consumption of energy should be ascertainable not only to Gate Level or Register Transfer (RT) Level but also to the System Level. There is a trade-off between energy consumption and run-time. Researchers are working on low power consumption techniques without degrading performance of the system. The computing science developers focus on both compiler and non-compiler methods for energy minimization. This paper focuses on various techniques, methods and tools for minimization of energy without increasing runtime. The energy consumption and run time computed for various compiler techniques on XScale Architecture using XEEMU tool. The best compiler method picked out and code is tuned dynamically by varying voltage-frequency.
机译:能源消耗是现代计算时代的关键约束。能耗不仅应确定为门级或寄存器传输(RT)级别,而且还应确定为系统级别。能耗和运行时间之间需要权衡。研究人员正在研究低功耗技术,而不会降低系统性能。计算科学的开发人员集中精力于编译器和非编译器方法,以实现能耗最小化。本文着重于在不增加运行时间的情况下将能量最小化的各种技术,方法和工具。使用XEEMU工具为XScale Architecture上的各种编译器技术计算的能耗和运行时间。挑选出最佳的编译器方法,并通过改变电压-频率来动态调整代码。

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