Design of Miniaturized Dual-Mode Antenna for Handset Terminal Communication

IF 0.9 4区 工程技术 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Hui Zhang, Haofei Shi, Yandong Zhang, Zhijuan An
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引用次数: 0

Abstract

This paper presents a miniaturized dual-mode handset antenna design. A quadrifilar helix antenna (QHA) is utilized to work at higher band (1980-2010 MHz and 2170-2200 MHz) with circular polarization. By cutting off a circular slot on the outer conductor of the QHA feedline and introducing four quarter-wavelength short-circuited stubs, the QHA radiator and its feedline can also work as a monopole antenna at lower band (440-560 MHz) with linear polarization. With this radiator-sharing technique, the dual-mode characteristics can be achieved utilizing only a QHA; therefore, the antenna dimension can be reduced remarkably since it is unnecessary to design an additional monopole antenna. Moreover, the short-circuited stubs are designed with stripline and integrated with the one-to-four power divider and phase shifter for further miniaturization. The measured S11 is less than -8 dB. The typical gain is higher than 0.5 dBi at lower band and 2.5 dBi at higher band. The AR of the QHA is better than 1.3 dB, and the head SAR values are much lower than the international standard at both lower and higher bands. The proposed miniaturized dual-mode antenna can be applied to portable handsets to realize the intercom and satellite communications.
用于手持终端通信的小型化双模天线设计
本文介绍了一种小型化双模手机天线的设计。四线螺旋天线(QHA)被用于在更高波段工作(1980-2010 MHz和2170-2200 MHz),具有圆偏振。通过在QHA馈线的外导体上切掉一个圆形槽,并引入四个四分之一波长的短路短截线,QHA辐射器及其馈线也可以作为低频段(440-560 MHz)的线性极化。利用这种散热器共享技术,仅利用QHA就可以实现双模特性;因此,由于不需要设计额外的单极天线,因此可以显著减小天线尺寸。此外,短路短截线采用带状线设计,并集成了一到四功率分配器和移相器,以进一步实现小型化。测量的S11小于-8 dB。典型增益高于0.5 低频段和2.5的dBi dBi。QHA的AR优于1.3 dB,并且头部SAR值在较低和较高波段都远低于国际标准。所提出的小型化双模天线可以应用于便携式手机,以实现对讲机和卫星通信。
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
CiteScore
4.00
自引率
23.50%
发文量
489
审稿时长
3 months
期刊介绍: International Journal of RF and Microwave Computer-Aided Engineering provides a common forum for the dissemination of research and development results in the areas of computer-aided design and engineering of RF, microwave, and millimeter-wave components, circuits, subsystems, and antennas. The journal is intended to be a single source of valuable information for all engineers and technicians, RF/microwave/mm-wave CAD tool vendors, researchers in industry, government and academia, professors and students, and systems engineers involved in RF/microwave/mm-wave technology. Multidisciplinary in scope, the journal publishes peer-reviewed articles and short papers on topics that include, but are not limited to. . . -Computer-Aided Modeling -Computer-Aided Analysis -Computer-Aided Optimization -Software and Manufacturing Techniques -Computer-Aided Measurements -Measurements Interfaced with CAD Systems In addition, the scope of the journal includes features such as software reviews, RF/microwave/mm-wave CAD related news, including brief reviews of CAD papers published elsewhere and a "Letters to the Editor" section.
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