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首页> 外文期刊>IEICE Transactions on Communications >60-GHz-Band Switched-Beam Eight-Sector Antenna with SP8T Switch for 180° Azimuth Scan
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60-GHz-Band Switched-Beam Eight-Sector Antenna with SP8T Switch for 180° Azimuth Scan

机译:具有SP8T开关的60 GHz波段开关波束八扇区天线,用于180°方位扫描

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摘要

This paper proposes a new switched-beam eight-sector antenna for multi-gigabit wireless LAN in the 60-GHz band. Our antenna system introduces access-point (AP) and user-terminal (UT) antennas having the same sec θ pattern in the elevation plane so that the received signal power at the receiver is kept constant, independent of the position of the UT. For this system, an eight-sector antenna, a single-pole eight-throw (SP8T) switch, and a beam control unit are integrated as the switched-beam eight-sector antenna. The specifications of the antenna are wide bandwidth (≥3 GHz), high-gain (≥13 dBi at θ=66°), and wide coverage area in both azimuth (0° ≤ φ ≤ 180°) and elevation planes (0° ≤ θ ≤ 66°). The antenna beam is steered within the specified response time (which is short) by the Media Access Control (MAC). In our antenna, both high gain for a wide elevation angle and wide bandwidth are obtained by using the proposed closely spaced waveguide slot array antenna, which is used as each sector of the eight-sector antenna. The SP8T switch with the beam control unit enables 180° beam scan in the azimuth plane. In a component evaluation, the eight-sector antenna achieves a 10-dB return loss bandwidth of 8 GHz with more than 40-dB port-to-port isolation. Radiation characteristics of the eight-sector antenna indicate that it covers 82% of the entire coverage area at the center frequency and that the coverage rate in the operating frequency band is from 78% to 88%. The performance of the SP8T switch and the beam control unit is verified by measuring the insertion loss at all eight ports and the switching response time. In the antenna system evaluation, measurement by using two prototype antennas as the AP and the UT antennas in the usage condition indicates that the measured received signal power meets the specified constant power for the specified wide elevation angle range, independent of the position of the UT. These experimental results verify the effectiveness of our proposed antenna for multi-gigabit WLAN.
机译:本文为60 GHz频段的多千兆位无线局域网提出了一种新型的开关波束八扇区天线。我们的天线系统引入了在仰角平面上具有相同secθ方向图的接入点(AP)和用户终端(UT)天线,从而使接收器处的接收信号功率保持恒定,而与UT的位置无关。对于此系统,将八扇形天线,单刀八掷(SP8T)开关和波束控制单元集成在一起,作为开关波束八扇形天线。天线的规格是宽带宽(≥3GHz),高增益(在θ= 66°时≥13 dBi),以及在方位角(0°≤φ≤180°)和仰角平面(0° ≤θ≤66°)。媒体访问控制(MAC)在指定的响应时间内(较短)控制天线波束。在我们的天线中,通过使用建议的紧密间隔的波导缝隙阵列天线(既用作八扇区天线的每个扇区),又可以获得宽仰角和宽带宽的高增益。带光束控制单元的SP8T开关可在方位平面上进行180°光束扫描。在组件评估中,八扇区天线可实现8 GHz的10 dB回波损耗带宽,并具有40 dB以上的端口间隔离度。八扇区天线的辐射特性表明,它在中心频率覆盖了整个覆盖区域的82%,并且在工作频带内的覆盖率为78%至88%。通过测量所有八个端口的插入损耗和开关响应时间,可以验证SP8T开关和光束控制单元的性能。在天线系统评估中,通过在使用条件下使用两个原型天线作为AP和UT天线进行测量,表明所测量的接收信号功率在指定的宽仰角范围内满足指定的恒定功率,而与UT的位置无关。这些实验结果验证了我们提出的天线在多千兆位WLAN上的有效性。

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