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Energy impact in the design space exploration of loop buffer schemes in embedded systems

机译:嵌入式系统中环路缓冲方案的设计空间探索的能量影响

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The reduction of the energy consumption in the domain of the embedded systems is becoming the most important design goal due to the increasing use of battery powered consumer devices. Previous research has pointed out the instruction memory organisation as one of the major sources of energy consumption of the embedded systems. Due to this fact, the introduction of any enhancement in this component of the system becomes crucial in order to decrease this energy bottleneck. The purpose of this paper is to present a highlevel energy analysis of the loop buffer schemes that exist in the embedded systems. The crucial energy analysis that is presented in this paper not only proposes a method to evaluate different loop buffer schemes for a certain application, but also guides embedded systems designers to make the correct decision in the trade-offs that exist between the energy budget, the required performance, and the area cost of the embedded system. Experimental results used in this analysis show that, the search of energy savings (up to 76%) has to take into account the performance penalty, the area cost, and the impact of the implementation technology in order to choose the most suitable enhancement that has to be introduced in the instruction memory organisation from the point of view of the energy consumption.
机译:由于使用电池供电的消费设备的使用,嵌入式系统领域的能量消耗的降低成为最重要的设计目标。以前的研究指出指导记忆组织作为嵌入式系统的主要能耗来源之一。由于这一事实,系统的该组件中的任何增强的引入变得至关重要,以降低这种能量瓶颈。本文的目的是呈现嵌入式系统中存在的环路缓冲方案的高级能量分析。本文提出的关键能量分析不仅提出了一种评估某些应用程序的不同环路缓冲方案的方法,而且还指导嵌入式系统设计人员在能源预算之间存在的权衡中进行正确的决定,所需的性能和嵌入式系统的面积成本。该分析中使用的实验结果表明,寻求节能(高达76%)必须考虑到实施技术的性能损失,面积成本和影响,以选择最适合的增强从能量消耗的角度来看在指令记忆组织中。

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