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结合天线的能量收集技术的合成、表征与发展:一项综述研究

Synthesis, Characterization and Development of Energy Harvesting Techniques Incorporated with Antennas: A Review Study.

作者信息

Ibrahim Husam Hamid, Singh Mandeep S J, Al-Bawri Samir Salem, Islam Mohammad Tariqul

机构信息

Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, UKM, Bangi 43600 Malaysia.

Department of Electronics & Communication Engineering, Faculty of Engineering & Petroleum, Hadhramout University, Al-Mukalla 50512, Hadhramout, Yemen.

出版信息

Sensors (Basel). 2020 May 13;20(10):2772. doi: 10.3390/s20102772.

Abstract

The investigation into new sources of energy with the highest efficiency which are derived from existing energy sources is a significant research area and is attracting a great deal of interest. Radio frequency (RF) energy harvesting is a promising alternative for obtaining energy for wireless devices directly from RF energy sources in the environment. An overview of the energy harvesting concept will be discussed in detail in this paper. Energy harvesting is a very promising method for the development of self-powered electronics. Many applications, such as the Internet of Things (IoT), smart environments, the military or agricultural monitoring depend on the use of sensor networks which require a large variety of small and scattered devices. The low-power operation of such distributed devices requires wireless energy to be obtained from their surroundings in order to achieve safe, self-sufficient and maintenance-free systems. The energy harvesting circuit is known to be an interface between piezoelectric and electro-strictive loads. A modern view of circuitry for energy harvesting is based on power conditioning principles that also involve AC-to-DC conversion and voltage regulation. Throughout the field of energy conversion, energy harvesting circuits often impose electric boundaries for devices, which are important for maximizing the energy that is harvested. The power conversion efficiency (PCE) is described as the ratio between the rectifier's output DC power and the antenna-based RF-input power (before its passage through the corresponding network).

摘要

对源自现有能源的高效新能源的研究是一个重要的研究领域,并且正吸引着大量关注。射频(RF)能量收集是一种很有前景的替代方案,可直接从环境中的射频能源为无线设备获取能量。本文将详细讨论能量收集概念的概述。能量收集是自供电电子设备发展的一种非常有前景的方法。许多应用,如物联网(IoT)、智能环境、军事或农业监测,都依赖于传感器网络的使用,而这些传感器网络需要大量小型且分散的设备。此类分布式设备的低功耗运行需要从其周围环境获取无线能量,以实现安全、自给自足且无需维护的系统。能量收集电路是已知的压电和电致伸缩负载之间的接口。能量收集电路的现代观点基于功率调节原理,其中还涉及交流到直流的转换和电压调节。在整个能量转换领域,能量收集电路常常为设备设定电边界,这对于最大化收集到的能量很重要。功率转换效率(PCE)被描述为整流器的输出直流功率与基于天线的射频输入功率(在其通过相应网络之前)的比值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7453/7294434/c778c5ba32cb/sensors-20-02772-g001.jpg

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