设计用于提高移动通信基站指向性和增益的圆形微带贴片天线

Simon Okoh, J. E. Okhaifoh
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引用次数: 0

摘要

本研究介绍了用于提高移动通信基站指向性和增益的圆形微带贴片天线(CMPA)的设计。该设计采用了 Rogger/5880 基材,其介电常数为 2.2,切角为 0.00009,基材高度(厚度)为 0.98μm,频率为 1.65THz。 设计中使用了分集天线阵列处理(DAAP)和切比雪夫天线阵列(CAA)方法。使用 AutoCAD 软件和二维数据绘图仪绘制图表,并使用 Maple 软件进行模拟。对于 0o、30o、60o、90o、120o、150o 和 180o 角度,阵列系数分别为 7.84dB、7.85dB、7.87dB、7.88dB、7.87dB、7.85dB 和 7.84db。设计结果表明,该天线的侧叶电平非常低,仅为 0.01dB,这表明它能很好地抑制在不需要的方向上产生的辐射。此外,该天线的电压驻波比(VSWR)为 1,确保了从信号源到负载的最大功率传输效率。此外,该天线还具有高指向性和约 9 分贝的增益,从而增强了信号强度和覆盖范围。经测量,半功率波束宽度(HPBW)和第一空波束宽度(FNBW)分别为 300 和 600。 这些参数描述了主辐射波束的角宽度和波束图案空点的锐度。总之,所设计的 CMPA 及其基于 CAA 的天线阵列在通信网络和移动通信基站方面具有巨大潜力,可在辐射特性和信号质量方面提供更高的性能。
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Design of a Circular Micro-strip Patch Antenna for Improved Directivity and Gain of Mobile Communication Base Station
This study presents the design of Circular Micro-strip Patch Antenna (CMPA) for improved directivity and gain of mobile communication base station. The design incorporates a Rogger/5880 substrate material with a permittivity of 2.2, tangent angle of 0.00009 and a substrate height (thickness) of 0.98μm at a frequency of 1.65THz.  Diversity Antenna Array Processing (DAAP) and Chebyshev Antenna Array (CAA) methods were used in the design. AutoCAD software and 2D data plotter were used for the diagrams and charts while Maple software was used for simulation. For angles of 0o, 30o, 60o, 90o, 120o, 150o and 180o, the array factors are 7.84dB, 7.85dB, 7.87dB, 7.88dB, 7.87dB, 7.85dB and 7.84db respectively. The results from the design demonstrated a remarkably low side lobe level of 0.01dB, indicating excellent suppression of unwanted radiation in undesired directions. Additionally, the antenna exhibits a Voltage Standing Wave Ratio (VSWR) of unity, ensuring maximum power transfer efficiency from the source to the load. Furthermore, the antenna shows a high directivity and gain of approximately 9dB, which enhances the signal strength and coverage range. The Half Power Beam-width (HPBW) and First Null Beam-width (FNBW) was measured as 300 and 600 respectively.  These parameters depict the angular width of the main radiation beam and the sharpness of the beam pattern’s nulls. In all, the designed CMPA with its CAA based antenna array holds great potential for communication networks and for mobile communication base station, offering enhanced performance in terms of radiation characteristics and signal quality.
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