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Leveraging Energy Harvesting and Wake-Up Receivers for Long-Term Wireless Sensor Networks

机译:利用能量收集和唤醒接收器建立长期无线传感器网络

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摘要

Wireless sensor nodes are traditionally powered by individual batteries, and a significant effort has been devoted to maximizing the lifetime of these devices. However, as the batteries can only store a finite amount of energy, the network is still doomed to die, and changing the batteries is not always possible. A promising solution is to enable each node to harvest energy directly in its environment, using individual energy harvesters. Moreover, novel ultra-low power wake-up receivers, which allow continuous listening of the channel with negligible power consumption, are emerging. These devices enable asynchronous communication, further reducing the power consumption related to communication, which is typically one the most energy-consuming tasks in wireless sensor networks. Energy harvesting and wake-up receivers can be combined to significantly increase the energy efficiency of sensor networks. In this paper, we propose an energy manager for energy harvesting wireless sensor nodes and an asynchronous medium access control protocol, which exploits ultra-low power wake-up receivers. The two components are designed to work together and especially to fit the stringent constraints of wireless sensor nodes. The proposed approach has been implemented on a real hardware platform and tested in the field. Experimental results demonstrate the benefits of the proposed approach in terms of energy efficiency, power consumption and throughput, which can be up to more than two-times higher compared to traditional schemes.
机译:传统上,无线传感器节点由单独的电池供电,并且已经做出了巨大的努力来最大化这些设备的寿命。但是,由于电池只能存储有限量的能量,因此网络仍然注定要崩溃,并且更换电池并非总是可行的。一种有前途的解决方案是使每个节点都可以使用单独的能量收集器直接在其环境中收集能量。而且,正在出现新颖的超低功率唤醒接收机,其允许以可忽略的功耗连续收听信道。这些设备支持异步通信,从而进一步降低了与通信有关的功耗,这通常是无线传感器网络中最耗能的任务之一。可以将能量收集和唤醒接收器结合使用,以显着提高传感器网络的能量效率。在本文中,我们提出了一种用于能量收集无线传感器节点的能量管理器和一个异步媒体访问控制协议,该协议利用了超低功耗唤醒接收器。这两个组件设计为可以协同工作,特别是为了适应无线传感器节点的严格限制。所提出的方法已经在真实的硬件平台上实现并在现场进行了测试。实验结果证明了该方法在能源效率,功耗和吞吐量方面的优势,与传统方案相比,可以高出两倍以上。

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