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High-Level Energy Estimation for ARM-Based SOCs

机译:基于ARM的SOC的高级能量估计

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摘要

In recent years, power consumption has become a critical concern for many VLSI systems. Whereas several case studies demonstrate that technology-, layout-, and gate-level techniques offer power savings of a factor of two or less, architecture and system-level optimization can often result in orders of magnitude lower power consumption. Therefore, the energy-efficient design of portable, battery-powered systems demands an early assessment, i.e., at the algorithmic and architectural levels, of the power consumption of the applications they target. Addressing this issue, we developed an energy-aware architectural design exploration and analysis tool for ARM based system-on-chip designs. The tool integrates the behavior and energy models of several user-defined, custom processing units as an extension to the cycle-accurate instruction-level simulator for the ARM low-power processor family, called the ARMulator. The models we implemented take into account the particular class, e.g., datapath, memory, control, or interconnect, as well as the architectural complexity of the hardware unit involved and the signal activity triggered by the specific algorithm executed on the ARM processor. Our tool can estimate at the architectural level of detail the overall energy consumption or can report the energy breakdown among different units. Preliminary experiments indicated that the estimation accuracy is within 25% of what can be accomplished after a circuit-level simulation on the laid-out chip.
机译:近年来,功耗已成为许多VLSI系统的关键问题。尽管一些案例研究表明,技术,布局和门级技术可节省两倍或更少的功耗,但架构和系统级优化通常可以使功耗降低几个数量级。因此,便携式电池供电系统的节能设计要求及早评估它们的目标应用的功耗,即在算法和体系结构级别。为解决此问题,我们为基于ARM的片上系统设计开发了一种节能的体系结构设计探索和分析工具。该工具集成了多个用户定义的自定义处理单元的行为和能量模型,作为ARM低功耗处理器家族称为ARMulator的精确周期指令级模拟器的扩展。我们实现的模型考虑了特定的类别,例如数据路径,内存,控制或互连,以及所涉及的硬件单元的体系结构复杂性以及由ARM处理器上执行的特定算法触发的信号活动。我们的工具可以在体系结构的详细级别上估算总体能耗,也可以报告不同单位之间的能耗细分。初步实验表明,在布局芯片上进行电路级仿真后,估计精度在可实现的精度的25%以内。

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