He Denghui, Cui Yuanhui, Ming Fangchao, Wu Weiping
School of Information Science and Engineering, Dalian Polytechnic University, Dalian 116034, China.
Laboratory of Thin Film Optics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, 390 Qinghe Road, Jiading District, Shanghai 201800, China.
Sensors (Basel). 2023 Sep 30;23(19):8200. doi: 10.3390/s23198200.
In recent years, passive wireless sensors have been studied for various infrastructure sectors, making them a research and development focus. While substantial evidence already supports their viability, further effort is needed to understand their dependability and applicability. As a result, issues related to the theory and implementation of wireless sensors still need to be resolved. This paper aims to review and summarize the progress of the different materials used in different passive sensors, the current status of the passive wireless sensor readout devices, and the latest peripheral devices. It will also cover other related aspects such as the system equipment of passive wireless sensors and the nanogenerators for the energy harvesting for self-powered sensors for applications in contemporary life scenarios. At the same time, the challenges for future developments and applications of passive wireless are discussed.
近年来,被动式无线传感器已在各个基础设施领域得到研究,成为研发重点。尽管已有大量证据支持其可行性,但仍需进一步努力来了解其可靠性和适用性。因此,与无线传感器理论和实施相关的问题仍有待解决。本文旨在回顾和总结不同被动传感器中使用的不同材料的进展、被动无线传感器读出设备的现状以及最新的外围设备。它还将涵盖其他相关方面,如被动无线传感器的系统设备以及用于当代生活场景中自供电传感器能量收集的纳米发电机。同时,讨论了被动无线技术未来发展和应用面临的挑战。