基于环形矩形槽型的三频带圆形贴片微带天线设计与仿真

Riyam A. Mutashar, Wa'il A. Godaymi Al-Tumah, Akeel S.Tahir
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引用次数: 1

摘要

本文设计了一种新型的基于槽的环形微带天线结构,并对其进行了仿真。这些槽有不同大小的环形、环形和矩形。所述环形槽蚀刻在所述圆形补片内部,另外两个矩形槽蚀刻在所述圆形补片边缘。采用Ansoft高频结构模拟器(HFSS) 13版对建议天线进行了仿真。研究了输入阻抗、反射系数、增益、辐射方向图和表面电流等参数。结果表明,优化设计的天线在2.695、5.799和8.323 GHz三个频率上均有谐振。在-10 dB处,模拟反射系数的带宽分别为106、204和371 MHz,与S、C和x频段频率相同。因此,优化设计的天线除了在这三个频段的各种应用中发挥重要作用外,还可以用于节省空间的应用。
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Design and Simulation of Triple Band Circular Patch Microstrip Antenna Based on Shape of Ring and Rectangular Slots
In this work, new structures of circular microstrip antenna based on slots are designed and simulated to operate with triple band applications. These slots are annular ring and rectangular shapes in different sizes. The annular ring slot is etched inside the circular patch while the other two rectangular slots are etched on the circular patch edge. The suggested antennas are simulated using version 13 of Ansoft High Frequency Structure Simulator (HFSS). The various parameters such as input impedance, reflection coefficient, gain, radiation patterns and surface currents were investigated. The present results observed that the optimum antenna designed is resonating at three frequencies 2.695, 5.799 and 8.323 GHz. Also, the bandwidths of simulated reflection coefficients at -10 dB are 106, 204 and 371 MHz which are identical with the S-, C- and X-bands frequencies, respectively. Therefore, the optimum antenna designed can be used in the space saving applications in addition to its important role in variety applications at these three frequency bands.
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