介质谐振器天线(DRA)的带宽增强

A. S. Batcha, Ching-Kwang Lee, G. Vetharatnam
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引用次数: 9

摘要

目前,在微波范围内工作的无线系统需要相对较大的物理尺寸的天线。例如,目前的移动系统由于其相对庞大的天线而遭受空间问题。这促使了各种无线应用中介质谐振器天线(DRA)的带宽增强和尺寸减小。本文综述了近年来有关DRA增强带宽和减小尺寸的最新研究进展。随后,对单堆叠DRA结构、特殊形状DRA和多段DRA (MSDRA)、混合DRA等不同的带宽增强方法的优缺点进行了广泛的综述。本文还探讨了下一代网络(NGN)应用中使用DRA和微带线改善带宽特性的新技术的程度。本文从带宽增强技术、合并建议、建模和优化方法等方面对紧凑型宽带dra的设计进行了综述。最后,通过采用设计修改、替代建模和优化设计参数,确定了进一步改进以克服缺点的可能含义。这将有利于研究人员和天线制造商。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bandwidth enhancement of Dielectric Resonator Antenna (DRA)
Presently, wireless systems operating in the microwave range require relatively larger physical size antenna. For instance, the present mobile systems suffer spatial problems due to their relatively voluminous antennas. This has prompted bandwidth enhancement and size reduction of Dielectric Resonator Antenna (DRA) of various wireless applications. This paper reviews the latest research pertaining to bandwidth enhancement and size reduction of DRA in the recent year. Subsequently, the pros and cons of different methods to enhance bandwidth such as single stacked DRA structures, special DRA shapes and multi-segment DRA (MSDRA), hybrid DRA have been reviewed extensively. This review also explores the extent of the new techniques used for improving the bandwidth characteristics using DRA and Microstrip line for Next Generation Networks (NGN) applications. Various aspects of bandwidth enhancement techniques, suggestions for merging, modelling and optimization method for designing compact wideband DRAs have been reviewed extensively. Finally, the possible implications are identified for further improvement to overcome shortcomings by employing design modification, alternative modeling, and optimization of design parameters. This will benefit researchers and antenna manufacturers.
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