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Achievement of inverse frequency-dependent phase shift by using composite right/left-handed phase shifter

机译:使用右/左手相移器实现逆频率相关的相移

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In the conventional base station antenna, a linear array antenna is used. For suppressing the interference between neighbouring cells, the main beam is down-tilted to the cell edges of own radio zones [1]. Recently, the multi-frequency base station antenna is used due to a limited space in the base station [2]. The beam tilt angle is usually designed by conventional phase shifters. For example, in the dual-frequency (1.5 GHz and 2 GHz) base station antenna, the beam tilt angle becomes frequency-independent. However, the half-power beamwidth at 1.5 GHz is broader than that at 2 GHz. Therefore, the interference to the neighbouring cell becomes large at 1.5 GHz. To suppress the interference at 1.5 GHz, the composite right/left-handed (CRLH) phase shifter has been proposed for achieving inverse phase shift at each frequency by using the dispersion relation of the CRLH transmission line [3]. The variation of the dispersion curve can be obtained by mechanically-shifting the patch for series capacitance. This paper presents the dispersion design of the unit cell and the experimental verification of the inverse phase shift at each frequency.
机译:在传统的基站天线中,使用线性阵列天线。为了抑制相邻小区之间的干扰,将主波束向下倾斜到自己的无线电区域的小区边缘[1]。近来,由于基站中有限的空间而使用多频基站天线[2]。光束倾斜角通常由常规移相器设计。例如,在双频(1.5 GHz和2 GHz)基站天线中,波束倾斜角变得与频率无关。但是,1.5 GHz时的半功率波束宽度比2 GHz时的宽。因此,在1.5GHz下对相邻小区的干扰变大。为了抑制1.5 GHz时的干扰,已提出使用复合右/左手(CRLH)移相器来通过使用CRLH传输线的色散关系在每个频率上实现逆相移[3]。色散曲线的变化可以通过机械移动贴片的串联电容来获得。本文介绍了晶胞的色散设计和在每个频率下逆相移的实验验证。

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