An Optically Transparent Near-Field Focusing Metasurface

光学 无线电源传输 光电子学 物理 阻抗匹配 电容 氧化铟锡 带宽(计算) 计算机科学 材料科学 电介质 无线 电阻抗 电信 纳米技术 电极 薄膜 量子力学
作者
Long Li,Pei Zhang,Fei Cheng,Mingyang Chang,Tie Jun Cui
出处
期刊:IEEE Transactions on Microwave Theory and Techniques [IEEE Microwave Theory and Techniques Society]
卷期号:69 (4): 2015-2027 被引量:45
标识
DOI:10.1109/tmtt.2021.3061475
摘要

We propose a novel optically transparent reflection-type metasurface based on indium tin oxide (ITO) material for simultaneously achieving high transmission of visible light and near-field focusing (NNF) of microwave, demonstrating its potential for wireless power transfer (WPT) and harvesting applications. By achieving high impedance of the metasurface, this work overcomes the main challenge in designing metasurface with lossy metal materials, i.e., optimizing the tradeoff between phase shift characteristics and efficiency loss. We propose a new element with two degrees of freedom to ensure that the phase shift range can reach 350° while keeping |S 11 | less than -2.5 dB. In addition, we adopt the grid ground (GND) instead of the complete GND plane to further improve the light transmittance. Based on the above considerations, we design two types of metasurfaces for deployments in ambient wireless energy harvesting (plane-wave feeding) and WPT (horn feeding), respectively. Its NNF transfer efficiency can reach more than 60% of the metasurface based on good conductor materials. The relative bandwidth with 50% transfer efficiency can reach 34.5% (4.9-6.9 GHz). We fabricate an ITO-based prototype of the metasurface with the dimension of 342 ×342 ×4.4 mm 3 ( 6.6 ×6.6 ×0.08λ 0 3 ) with the sheet impedance of 1 Ω/sq and a light transmittance of 60%. We also perform near-field scanning measurements to verify that the focusing position is accurate. Finally, through WPT and harvesting tests, we achieve a WPT and receiving efficiency (from power source to receiving antenna) of 12.6% and a rectification efficiency of 55%, confirming the practicability and effectiveness of the proposed work.
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