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Design of an 3-Element Arc Array of Microstrip Antenna for Widen Bandwidth and Adjusting Beam Direction

机译:微带天线三元素弧形阵列的设计,用于扩展带宽和调整波束方向

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In the detector design of RFID, radio frequency identification devices, the antenna beam needs to meet the conditions of high gain and adjustable direction to cover the room and corridor in indoor environment,. In this paper, an 3-element arc array of microstrip antenna based on circularly polarized microstrip patch antenna are studied by quasi-Newton method in HFSS(high-frequency structure simulator). In this array, three probe-fed circularly polarized microstrip patch antenna, whose working frequency is 915Mhz, is placed on an arc array and the two array elements on both sides are symmetric. It is investigated that gain and bandwidth of the antenna array can be enhanced and the beam direction can be adjusted by properly arranging these array elements. The driven patch is a perturbed square one with two diagonal corners truncated in order to realize circular polarization. The model of antenna array has a gain of 5.9dB with a 3dB axial ratio bandwidth of 23.8%. The proposed antennas have been made and measured. The experimental results are basically the same as the simulation results. The research results provide a new idea for the design of microstrip antenna array, which can obtain higher gain while adjusting the beam direction of the antenna array.
机译:在RFID,射频识别设备的检测器设计中,天线波束需要满足高增益和方向可调的条件,以覆盖室内环境中的房间和走廊。本文在高频结构仿真器(HFSS)中采用准牛顿法研究了一种基于圆极化微带贴片天线的3元弧形微带天线阵列。在该阵列中,将工作频率为915Mhz的三个探测馈电的圆极化微带贴片天线放置在一个弧形阵列上,并且两侧的两个阵列元件是对称的。研究表明,通过适当地布置这些阵列元件,可以提高天线阵列的增益和带宽,并且可以调整波束方向。被驱动的贴片是一个受扰动的正方形,带有两个截短的对角线,以实现圆极化。天线阵列模型的增益为5.9dB,轴向比率3dB带宽为23.8%。拟议的天线已经制作和测量。实验结果与仿真结果基本相同。研究结果为微带天线阵列的设计提供了新思路,可以在调节天线阵列波束方向的同时获得更高的增益。

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