Dielectric patch resonator and antenna

IF 3.1 3区 计算机科学 Q2 TELECOMMUNICATIONS
Jianxin Chen, Xue‐Ying Wang, Shichang Tang, Yongle Wu
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引用次数: 0

Abstract

This paper presents an overview of dielectric patch (DP) antennas developed in recent years. The employed DP resonator composed of a DP and a bottom substrate is analyzed comprehensively here, enabling the easy realization of a quasi-planar DP antenna. It combines the dual advantages of the conventional microstrip patch (MP) antenna and dielectric resonator (DR) antenna in terms of profile, gain, bandwidth, radiation efficiency, and design freedom. Furthermore, the DP antenna inherits the multi-mode characteristic of the DR antenna, thus it has a large number of high-order modes, including TMmn mode and TEmn mode. The high-order modes are widely applied, for example, by combining with the dominantTMio mode to expand the bandwidth, or selecting multiple higher-order modes to implement a high-gain antenna. Additionally, the non-radiation high-order modes are also utilized to produce natural radiation null in filtering antenna design. In this paper, the design theories and techniques of DP antenna are introduced and investigated, including calculation and control methods of the resonant mode frequencies, analysis of the radiation mechanism, and applications of the multi-mode characteristic. This overview could provide guidance for the subsequent antenna design, thus effectively avoid time-consuming optimization.
介电贴片谐振器和天线
本文综述了近年来发展起来的介电贴片(DP)天线。本文全面分析了由DP和底部衬底组成的DP谐振腔,使准平面DP天线易于实现。它结合了传统微带贴片(MP)天线和介电谐振器(DR)天线在外形、增益、带宽、辐射效率和设计自由度方面的双重优势。DP天线继承了DR天线的多模特性,具有大量的高阶模式,包括TMmn模式和TEmn模式。高阶模式得到了广泛的应用,例如通过与主导的ttmio模式相结合来扩展带宽,或者选择多个高阶模式来实现高增益天线。此外,在滤波天线设计中还利用非辐射高阶模产生自然辐射零。本文介绍和研究了DP天线的设计理论和技术,包括谐振模式频率的计算和控制方法、辐射机理的分析以及多模特性的应用。该概述可以为后续的天线设计提供指导,从而有效地避免耗时的优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
China Communications
China Communications 工程技术-电信学
CiteScore
8.00
自引率
12.20%
发文量
2868
审稿时长
8.6 months
期刊介绍: China Communications (ISSN 1673-5447) is an English-language monthly journal cosponsored by the China Institute of Communications (CIC) and IEEE Communications Society (IEEE ComSoc). It is aimed at readers in industry, universities, research and development organizations, and government agencies in the field of Information and Communications Technologies (ICTs) worldwide. The journal's main objective is to promote academic exchange in the ICTs sector and publish high-quality papers to contribute to the global ICTs industry. It provides instant access to the latest articles and papers, presenting leading-edge research achievements, tutorial overviews, and descriptions of significant practical applications of technology. China Communications has been indexed in SCIE (Science Citation Index-Expanded) since January 2007. Additionally, all articles have been available in the IEEE Xplore digital library since January 2013.
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