Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
11004308 | Optik - International Journal for Light and Electron Optics | 2018 | 19 Pages |
Abstract
Distinguished from conventional inductive or resonant method, this paper presents a novel high radiation gain and narrower half-power beamwidth microstrip patch antenna (MPA) array loading with modified-I-shaped(MIS) electromagnetic metamaterials(MTM) to apply in the microwave wireless power transmission(MWPT). The MIS MTM unit cell is simulated in HFSS and the effective parameters of the meta-atom is extracted by homogenization retrieval method. Detailed single MPA numerical computing and modeled simulation is proposed step by step and optimetrics procedure in HFSS is conducted to optimize the design parameters for optimum performance. To better take advantages of the higher directive radiation gain and planer structure, a 6âÃâ10âÃâ1 MIS MTM array acting as superstrate is placed above a 2âÃâ2 MPA array with delicate feeding network and power distribution system. Experiment investigation indicates that the MPA array with superstrate obtained the peak value gain of 17.66âdB compared to original 13.18âdB in the operating frequency of 10âGHz. The half-power beamwidth decreased from 36.775° to 18.645° for the E-plane and reduced to 19.958° from 38.649° for the H-plane respectively. The measured results of the fabricated prototype are consistent with the simulation ones with slight discrepancy. This method offers valuable guidance for designing high efficiency transmitting antenna system in application of MWPT.
Keywords
Related Topics
Physical Sciences and Engineering
Engineering
Engineering (General)
Authors
Tian-qian Li, Bo Ma, Xiao-feng Du, Hong-yuan Chen, Run-chun Deng, Xiao-ming Yang, Yu Yang, Hang He, Yuan-wen Chen, Wen-ran Lv,