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A Node's Life: Increasing WSN Lifetime by Dynamic Voltage Scaling

机译:节点的寿命:通过动态电压缩放来延长WSN寿命

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In mobile applications, like wireless sensor networks, it is often inevitable to use a location-independent source of energy. Wherever the batteries capacity or inefficient energy harvesting limits the lifetime, other solutions have to be implemented to increase the energy efficiency. Dynamic Voltage Scaling (DVS) is a well known technique with the ability to adapt the voltage level to the actual system load to save energy. While it has been used in many application areas, DVS has not been studied sufficiently for wireless sensor nodes. In this paper, we present a method to estimate the gain of DVS. We study DVS theoretically as well as in a practical manner, i.e., we using a prototype implementation of a DVS capable wireless sensor node. With the theoretical considerations we were able to optimize DVS for an 8-Bit ULP micro controller by a combination of DVS and dynamic power management (DPM). In addition, we proved the calculated results with an extensive practical evaluation of the concept using a prototypical implementation. Moreover, we analysed the effect of voltage scaling on other components of the sensor node (transceiver, sensors and memory).
机译:在移动应用中,例如无线传感器网络,通常不可避免地要使用与位置无关的能源。无论电池容量或能量收集效率低下如何限制使用寿命,都必须采用其他解决方案来提高能量效率。动态电压缩放(DVS)是一种众所周知的技术,能够使电压水平适应实际的系统负载以节省能源。尽管已将DVS用于许多应用领域,但尚未对无线传感器节点对DVS进行足够的研究。在本文中,我们提出了一种估计DVS增益的方法。我们在理论上和实践上都研究了DVS,即我们使用具有DVS功能的无线传感器节点的原型实现。基于理论上的考虑,我们能够通过DVS和动态电源管理(DPM)的组合为8位ULP微控制器优化DVS。此外,我们使用原型实现对概念进行了广泛的实践评估,从而证明了计算结果。此外,我们分析了电压缩放对传感器节点其他组件(收发器,传感器和内存)的影响。

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