一种三波段g型单极天线的设计与分析,用于MIMO环境下无线测量参数的带宽改进

Ajmal Hussain Shah, Surendran Subramaniam, S. Selvaperumal, Asadullah Shah, Sheroz Khan
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引用次数: 4

摘要

提出了一种适用于MIMO环境下ISM波段无线应用的三波段g型微带单极天线。本工作的新颖之处在于介质衬底的适当选择,现有天线长度和宽度的逻辑修改,以及现有g形天线两侧接地面的连接。该天线采用CPW波导馈电,并对参数进行了优化,从而获得了适用于ISM频段下、中、上端应用的更宽带宽的谐振模式。通过测量天线的带宽、指向性、增益、辐射方向图和回波损耗等参数,对该天线进行了仿真和性能分析。在2.4/2.45/4.2/5.85/6.07 GHz频段对天线的性能参数进行了评估。结果表明,在ISM频段下端(2.2144 ~ 2.687 GHz) 472.6 MHz带宽下,带宽提高了19.69%;在ISM频段中端(3.8504 ~ 5.0854 GHz) 1.235 GHz带宽下,带宽提高了29.39%;在ISM频段上端(5.0854 ~ 7.5632 GHz) 2.478 GHz带宽下,带宽提高幅度最大,达到40.79%。该天线将在未来进行制造和测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and analysis of a Tri-band G-shaped Monopole antenna for bandwith improvement for wireless applications of measurement parameters in MIMO environment
A Tri-band G-shaped Microstrip Monopole antenna suitable for the ISM band wireless applications in MIMO environment is presented in this paper. The novelty contributed in this work is the appropriate selection of dielectric substrate, the logical modifications in the existing antenna length and width, and the connection of the ground planes on both sides of the existing G-shaped antenna. The proposed antenna is fed with CPW waveguide and the parameters have been optimized so that resonant modes with wider bandwidths suitable for applications at lower, mid and the upper end of the ISM band can be achieved. The proposed antenna is simulated and its performance is analyzed by measuring various antenna parameters such as bandwidth, directivity, gain, radiation pattern and return loss. The performance parameters of the proposed antenna are assessed at 2.4/2.45/4.2/5.85/6.07 GHz. The results at the lower-band of ISM band (2.2144-2.687 GHz) show a bandwidth improvement of 19.69% with a bandwidth of 472.6 MHz, an improvement of 29.39% with a bandwidth of 1.235 GHz is evident at the middle of ISM band (3.8504-5.0854 GHz), and the highest bandwidth improvement of 40.79% with 2.478 GHz bandwidth in the upper end of ISM band (5.0854-7.5632 GHz) is noticed. The antenna will be fabricated and tested in future.
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