Liu Long, Guo Xinge, Liu Weixin, Lee Chengkuo
Department of Electrical and Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore 117576, Singapore.
Center for Intelligent Sensors and MEMS, National University of Singapore, Block E6 #05-11, 5 Engineering Drive 1, Singapore 117608, Singapore.
Nanomaterials (Basel). 2021 Nov 5;11(11):2975. doi: 10.3390/nano11112975.
With the fast development of energy harvesting technology, micro-nano or scale-up energy harvesters have been proposed to allow sensors or internet of things (IoT) applications with self-powered or self-sustained capabilities. Facilitation within smart homes, manipulators in industries and monitoring systems in natural settings are all moving toward intellectually adaptable and energy-saving advances by converting distributed energies across diverse situations. The updated developments of major applications powered by improved energy harvesters are highlighted in this review. To begin, we study the evolution of energy harvesting technologies from fundamentals to various materials. Secondly, self-powered sensors and self-sustained IoT applications are discussed regarding current strategies for energy harvesting and sensing. Third, subdivided classifications investigate typical and new applications for smart homes, gas sensing, human monitoring, robotics, transportation, blue energy, aircraft, and aerospace. Lastly, the prospects of smart cities in the 5G era are discussed and summarized, along with research and application directions that have emerged.
随着能量收集技术的快速发展,人们提出了微纳或规模化能量收集器,以实现具有自供电或自我维持能力的传感器或物联网(IoT)应用。智能家居中的便利设施、工业中的操纵器以及自然环境中的监测系统,都在通过转换各种情况下的分布式能量,朝着智能自适应和节能的方向发展。本综述重点介绍了由改进的能量收集器驱动的主要应用的最新进展。首先,我们研究了能量收集技术从基础到各种材料的发展历程。其次,讨论了自供电传感器和自我维持的物联网应用在当前能量收集和传感策略方面的情况。第三,细分分类研究了智能家居、气体传感、人体监测、机器人技术、交通运输、蓝色能源、飞机和航空航天等领域的典型和新应用。最后,讨论并总结了5G时代智慧城市的前景,以及已出现的研究和应用方向。