专用于WSN微控制器的事件驱动唤醒控制器的功率增益估计

Florent Berthier, E. Beigné, P. Vivet, O. Sentieys
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引用次数: 9

摘要

为了应对无线传感器节点的能量限制,必须找到新的架构解决方案。本文提出对WSN单片机子系统功耗进行分析,根据不同的应用执行阶段提取主要的功耗贡献者。我们的目标是利用额外的唤醒控制器模块提供的能量减少潜力。该模块能够代替主CPU处理当前的任务,如传感器、存储器或无线电之间的数据传输,以及整个节点子模块的精细功率/频率管理。提出了一种基于FDSOI28技术的微控制器子系统,在使用唤醒控制器和不使用唤醒控制器的情况下的功耗仿真。给出了从极低到高活跃率的应用场景的结果。该研究显示,全范围内功率增益从14.5%到76%,证明了这种新模块的未来设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power gain estimation of an event-driven wake-up controller dedicated to WSN's microcontroller
To deal with Wireless Sensor Node's energy constraints, new architectural solutions have to be found. This paper proposes to analyze a WSN microcontroller sub-system power consumption to extract the main power contributors according to different applicative execution phases. The objective is to come out with the energy reduction potentiality offered by an additional module called Wake-Up Controller. This block is able to substitute to the main CPU for current tasks like data transfers between sensors, memories or radio and fine grain power/frequency management of the entire node's sub-modules. Power simulations of a microcontroller sub-system based on FDSOI28 technology, with and without the Wake-Up Controller use, are proposed. Results are presented for applicative scenarios ranging from very low to high activity rates. This study exhibits power gains from 14.5% to 76% in the full range attesting the future design of this new module.
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