论文标题

迈向无电物联网的最佳动能收集

Towards Optimal Kinetic Energy Harvesting for the Batteryless IoT

论文作者

Sandhu, Muhammad Moid, Geissdoerfer, Kai, Khalifa, Sara, Jurdak, Raja, Portmann, Marius, Kusy, Brano

论文摘要

传统物联网(IoT)传感器依靠需要经常更换或充电的电池,从而阻碍其普遍的部署。一个有希望的替代方法是使用将环境能量转换为电能的能量收割机。动能收集(KEH)将环境运动/振动能转换为电能,从而为物联网传感器节点提供动力。但是,大多数以前的作品都使用KEH,而无需动态跟踪传感器的最佳操作点以获得最大功率输出。在本文中,我们系统地分析了传感器的工作点与相应能量产量之间的关系。为此,我们探索了KEH传感器的电压传感器特性,以找到其最大功率点(MPP)。我们展示了如何在实用能量收集电路中近似该工作点。我们设计了两个硬件电路原型,以评估所提出的机制的性能,并在通常在以人为中心的应用中发现的广泛的受控条件下,使用精确的载荷振动脱机分析收获的能量。我们分析了动态电流 - 电压特性,并指定了MPP采样率与收获效率之间的关系,概述了动态MPP跟踪的需求。结果表明,所提出的能量收集机制的表现优于传统方法,而产生的功率至少提供了比后者高的数量级。

Traditional Internet of Things (IoT) sensors rely on batteries that need to be replaced or recharged frequently which impedes their pervasive deployment. A promising alternative is to employ energy harvesters that convert the environmental energy into electrical energy. Kinetic Energy Harvesting (KEH) converts the ambient motion/vibration energy into electrical energy to power the IoT sensor nodes. However, most previous works employ KEH without dynamically tracking the optimal operating point of the transducer for maximum power output. In this paper, we systematically analyse the relation between the operating point of the transducer and the corresponding energy yield. To this end, we explore the voltage-current characteristics of the KEH transducer to find its Maximum Power Point (MPP). We show how this operating point can be approximated in a practical energy harvesting circuit. We design two hardware circuit prototypes to evaluate the performance of the proposed mechanism and analyse the harvested energy using a precise load shaker under a wide set of controlled conditions typically found in human-centric applications. We analyse the dynamic current-voltage characteristics and specify the relation between the MPP sampling rate and harvesting efficiency which outlines the need for dynamic MPP tracking. The results show that the proposed energy harvesting mechanism outperforms the conventional method in terms of generated power and offers at least one order of magnitude higher power than the latter.

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