Novel Multiband Millimeter Wave Antennas

A. Galib, Nayan Sarker, M. Mondal
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Abstract

The design of multiband antennas is useful for providing multiple resonance frequencies required for multiple application scenarios. However, there is a scarcity of compact-sized antennas in the 70-110 GHz band. In this regard, this paper proposes two multiband millimeter wave antennas in the W and D bands. A small-sized antenna operating at five different frequencies (penta band) with an overall dimension of 4.8 × 5.4 mm2 and resonances at 35.84 GHz, 46.07 GHz, 56.74 GHz, 81.6 GHz, and 110.09 GHz is proposed first. The second one is an array antenna from the first antenna with a size of 11.1 by 6.4 mm2 and resonances at 28.03 GHz, 36.5 GHz, 53.11 GHz, 65.98 GHz, 77.64 GHz, 89.3 GHz, 100.52 GHz, 111.74 GHz, and 122.19 GHz. Computer Simulation Technology (CST) Microwave Studio tool is used for antenna design purposes. At the two larger frequencies of 81.6 GHz and 110.09 GHz of the first antenna, (the BW, the directivity, the gain, and radiation efficiency) are (3.3 GHz, 6.486 dBi, 6.22 dB, and 94.06%), and (10.01 GHz, 8.797 dBi, 8.506 dB, and 93.52%), respectively. At 77.64 GHz, and 111.74 GHz of the array antenna, (the BW, the directivity, the gain, and radiation efficiency) are (3.73 GHz, 12.35 dBi, 10.68 dB, and 67.9%), (4.4 GHz, 15.31 dBi, 14.07 dB, and 75.23%), respectively. The advantage of the proposed antennas over the currently available 80 GHz and 110 GHz antennas is that they are compact in size while maintaining high bandwidth and gain. Hence, the proposed antennas have potential applications in satellite communications, the Internet of things, compact biomedical devices, and interferometry radars.
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新型多波段毫米波天线
多波段天线的设计有助于提供多种应用场景所需的多个谐振频率。然而,70-110 GHz频段的紧凑型天线数量很少。为此,本文提出了W和D两种多波段毫米波天线。首先提出了一种工作在5个不同频率(五波段)的小型天线,其总体尺寸为4.8 × 5.4 mm2,谐振频率为35.84 GHz、46.07 GHz、56.74 GHz、81.6 GHz和110.09 GHz。第二种是第一种天线的阵列天线,尺寸为11.1 × 6.4 mm2,谐振频率为28.03 GHz、36.5 GHz、53.11 GHz、65.98 GHz、77.64 GHz、89.3 GHz、100.52 GHz、111.74 GHz和122.19 GHz。计算机仿真技术(CST)微波工作室工具用于天线设计的目的。在第一天线的81.6 GHz和110.09 GHz两个较大频率处(BW、指向性、增益和辐射效率)分别为3.3 GHz、6.486 dBi、6.22 dB、94.06%和10.01 GHz、8.797 dBi、8.506 dB、93.52%)。在阵列天线的77.64 GHz和111.74 GHz频段,BW、指向性、增益和辐射效率分别为3.73 GHz、12.35 dBi、10.68 dB和67.9%,4.4 GHz、15.31 dBi、14.07 dB和75.23%。与目前可用的80 GHz和110 GHz天线相比,所提出的天线的优势在于它们体积小巧,同时保持高带宽和增益。因此,所提出的天线在卫星通信、物联网、紧凑型生物医学设备和干涉测量雷达中具有潜在的应用。
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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