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Efficient system-level prototyping of power-aware dynamic memory managers for embedded systems

机译:嵌入式系统的电源感知动态内存管理器的高效系统级原型

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摘要

In the near future, portable embedded devices must run multimedia and wireless network applications with enormous computational performance (1-40GOPS) requirements at a low energy consumption (0.1-2 W). In these applications, the dynamic memory subsystem is currently one of the main sources of power consumption and its inappropriate management can severely affect the performance of the whole system. Within this context, the construction and power evaluation of custom memory managers is one of the most difficult parts for an efficient mapping of such dynamic applications on low-power embedded systems. In this paper, we present a new system-level approach to model complex dynamic memory managers integrating detailed power profiling information. This approach allows to obtain power consumption estimates, memory footprint and memory access values to refine the dynamic memory management of the system in an early stage of the design flow and to easily explore the large search space of memory manager implementations.
机译:在不久的将来,便携式嵌入式设备必须以低能耗(0.1-2 W)运行具有巨大计算性能(1-40GOPS)要求的多媒体和无线网络应用程序。在这些应用中,动态内存子系统当前是功耗的主要来源之一,其不适当的管理会严重影响整个系统的性能。在这种情况下,定制内存管理器的构建和功耗评估是在低功耗嵌入式系统上有效映射此类动态应用程序最困难的部分之一。在本文中,我们提出了一种新的系统级方法来对复杂的动态内存管理器进行建模,以集成详细的电源配置信息。这种方法可以获取功耗估算值,内存占用量和内存访问值,以在设计流程的早期阶段完善系统的动态内存管理,并轻松探索内存管理器实现的大型搜索空间。

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