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Undervolting in WSNs: Theory and Practice

机译:无线传感器网络中的欠电压:理论与实践

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Adapting the voltage level of a processing unit to the actual system load leads to an increased energy efficiency. The aim is to extend the battery lifetime, but existing voltage scaling approaches still act with reserve. To reduce the energy consumption even further, it is possible to power the electric circuits below the specified voltage levels. Considering the processing unit of wireless sensor nodes, this “undervolting” saves up to 42% of energy per clock cycle, and hence would lead to a significant longer lifetime of nodes and networks. Contrariwise, operating processors or nodes outside their specifications add some extra incertitude to the system. In this paper, we analyze the effects of undervolting for a typical wireless sensor node in theory and practice. Moreover, we give a detailed insight into the dependencies and used a prototype implementation to characterize the influence of lower than recommended voltage levels on the microcontroller unit (MCU). In addition, the impact of different temperatures is considered as well as the behavior of an undervolted transceiver unit and, therefore, the effects on the wireless communication. While classical computer applications may contain too many hazards to outweigh the improved energy consumption when using undervolting, we show that it is particularly suitable for wireless sensor networks (WSNs) with a huge potential of saving energy and the opportunity of novel power management approaches on every layer.
机译:使处理单元的电压水平适应实际的系统负载可提高能效。目的是延长电池寿命,但是现有的电压缩放方法仍然可以保留。为了进一步降低能耗,可以在规定的电压水平以下为电路供电。考虑到无线传感器节点的处理单元,这种“欠电压”可在每个时钟周期内节省多达42%的能量,因此将导致节点和网络的使用寿命大大延长。相反,运行超出其规格的处理器或节点会给系统增加一些不确定性。在本文中,我们将在理论和实践中分析欠压对典型无线传感器节点的影响。此外,我们对依赖关系进行了详细的了解,并使用原型实现来表征低于建议的电压电平对微控制器单元(MCU)的影响。另外,考虑了不同温度的影响以及欠压收发器单元的行为,因此也考虑了对无线通信的影响。虽然经典计算机应用程序可能包含太多危害,无法承受使用欠压时改善的能耗,但我们证明,它特别适用于具有巨大节能潜力的无线传感器网络(WSN),并且在每种传感器上都有新颖的电源管理方法层。

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