用于WiFi和LTE移动应用的双频线性相控阵天线

M. Bashri, T. Arslan, W. Zhou
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引用次数: 14

摘要

本文提出了一种具有波束导向能力的线性相控阵天线,设计用于WiFi和LTE移动标准。所提出的天线阵列利用以扁平结构布置的4个贴片天线单元。所述阵列中使用的天线元件具有覆盖2个宽频带的双频特性;2.35 GHz ~ 2.8 GHz(下频段)和5 GHz ~ 5.5 GHz(上频段)。为了激发双共振,在矩形贴片的接平面上切割一个矩形环形槽。所述上贴片作为用于下频带操作的矩形环形槽的馈电元件,并作为上频带的散热器。仿真结果表明,低频段呈双向辐射,高频段呈单向辐射。通过改变单个天线单元的相位,该线性阵列的主波束可以在旁瓣电平(SLL)和半功率波束宽度(HPBW)分别小于-7 dBi和43°的情况下,下频段控制在±40°,上频段控制在±22°。该阵列打算由使用三个宽带3端口威尔金森功率分配器的公司馈电网络馈电。采用FR4 (1.6 mm)作为天线基板和馈电元件。该阵列和进给元件的整体尺寸分别为155 mm × 35 mm × 1.6 mm和155 mm × 83 mm × 1.6 mm。利用CST Microwave Studio进行了设计和仿真。该阵列天线特别适用于小型便携式移动基站。
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A dual-band linear phased array antenna for WiFi and LTE mobile applications
This paper presents a linear phased array antenna with beam steering capability designed for WiFi and LTE mobile standards. The proposed antenna array utilizes 4 elements of patch antenna arranged in a flat configuration. The antenna element used in the array exhibits dual band characteristic covering 2 wide frequency bands; 2.35 GHz to 2.8 GHz (lower band) and 5 GHz to 5.5 GHz (upper band). To excite dual resonances, a rectangular ring slot was cut in the ground plane of the rectangular patch. The upper patch acts as the feeding element for the rectangular ring slot for lower band operation and as a radiator at the upper frequency band. The simulation results show a bi-directional radiation pattern at the lower frequency band and unidirectional at the upper band. By varying the phase of the individual antenna elements, the main beam of the proposed linear array can be steered to a range of ±40° for the lower band and ±22° for the upper band with side lobe level (SLL) and half-power beam width (HPBW) less than -7 dBi and 43° respectively. The array is intended to be fed by a corporate feeding network using three wideband 3-port Wilkinson power dividers. A FR4 (1.6 mm) is used as the antenna substrate and the feeding element. The overall size of the proposed array and the feeding element is 155 mm × 35 mm × 1.6 mm and 155 mm × 83 mm × 1.6 mm respectively. The designs and simulations have been carried out using CST Microwave Studio. The presented array antenna can be particularly applied to small and portable mobile base stations.
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