Department of Computer Engineering, Chosun University, 309 Pilmun-daero, Gwangju 61452, Korea.
Sensors (Basel). 2022 Apr 12;22(8):2952. doi: 10.3390/s22082952.
With the emergence of the Internet of Things (IoT), billions of wireless devices, including sensors and wearable devices, are evolving under the IoT technology. The limited battery life of the sensor nodes remains a crucial implementation challenge to enable such a revolution, primarily because traditional battery replacement requires enormous human effort. Wirelessly powered sensor networks (WPSNs), which would eliminate the need for regular battery replacement and improve the overall lifetime of sensor nodes, are the most promising solution to efficiently address the limited battery life of the sensor nodes. In this study, an in-depth survey is conducted on the wireless power transfer (WPT) techniques through which sensor devices can harvest energy to avoid frequent node failures. Following a general overview of WPSNs, three wireless power transfer models are demonstrated, and their respective enabling techniques are discussed in light of the existing literature. Moreover, the existing WPT techniques are comprehensively reviewed in terms of critical design parameters and performance factors. Subsequently, crucial key performance-enhancing techniques for WPT in WPSNs are discussed. Finally, several challenges and future directions are presented for motivating further research on WPSNs.
随着物联网(IoT)的出现,包括传感器和可穿戴设备在内的数十亿个无线设备正在物联网技术下发展。传感器节点的有限电池寿命仍然是实现这一革命的关键实施挑战,主要是因为传统的电池更换需要大量的人力。无线供电传感器网络(WPSN)是解决传感器节点有限电池寿命问题的最有前途的解决方案,它可以消除定期更换电池的需求,并提高传感器节点的整体寿命。本研究对无线功率传输(WPT)技术进行了深入调查,传感器设备可以通过该技术来获取能量,从而避免节点频繁出现故障。在对 WPSN 进行了一般性概述之后,本文展示了三种无线功率传输模型,并根据现有文献讨论了它们各自的实现技术。此外,本文还从关键设计参数和性能因素的角度全面回顾了现有的 WPT 技术。随后,讨论了 WPSN 中 WPT 的关键增强性能技术。最后,提出了一些挑战和未来方向,以激励对 WPSN 的进一步研究。