Dual-Band Circularly Polarized Antenna With Circular Polarization in the Endfire Direction in Metal-Bezel Smartphones for n256-Band Direct Phone-to-Satellite Communication

圆极化 通信卫星 极化(电化学) 多波段设备 物理 天线(收音机) 卫星 电信 光学 计算机科学 天文 微带线 物理化学 化学
作者
Si-Si Rao,Yan Wang,Feng Xu,Junyi Wang,Yue Shi,Yanfeng Han
出处
期刊:IEEE Transactions on Antennas and Propagation [IEEE Antennas & Propagation Society]
卷期号:73 (4): 2385-2394 被引量:10
标识
DOI:10.1109/tap.2024.3515453
摘要

In this article, a dual-band circularly polarized (CP) antenna with circular polarization in the endfire direction in metal-bezel smartphones for n256-band direct phone-to-satellite communication is proposed. The dual-band CP antenna features a rectangular folded loop and a floating parasitic branch. Both a horizontally polarized 1-wavelength folded dipole mode of the rectangular folded loop and a horizontally polarized 0.5-wavelength mode of the floating parasitic branch are orthogonal to a vertically polarized 1-wavelength mode of the rectangular folded loop, enabling the dual-band CP operation in endfire direction. Also, the integration of the dual-band CP satellite antenna with a cellular antenna covering the 704–960 and 1710–2690 MHz frequency bands is realized. For the dual-band CP antenna, the measured -6 dB impedance bandwidths are 130 MHz (1920–2050 MHz) for the uplink of the n256-band, and 65 MHz (2160–2225 MHz) for the downlink of the n256-band. The measured 3 dB axial ratio (AR) bandwidth covers 1980–2070 and 2160–2270 MHz frequency bands for the uplink and downlink of n256-band, respectively. The dual-band CP antenna mainly radiated the left-hand CP (LHCP) wave, and the measured peak gains in the uplink and downlink frequency bands are 0.9 and 1.92 dBic, respectively. Additionally, the measured -6 dB impedance bandwidths of the cellular antenna are 704–976 and 1660–2780 MHz with average efficiencies of 56% and 59%, respectively. The proposed antenna with the characteristic of dual-band CP radiation beams in the endfire direction of the phone is a promising candidate for direct phone-to-satellite communication in modern smartphones.
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