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Design and Analysis of a Silicon-Based Pattern Reconfigurable Antenna Employing an Active Element Pattern Method

机译:基于有源元件图样方法的硅基图样可重构天线的设计与分析

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摘要

In this paper, a silicon-based radio frequency micro-electromechanical systems (RF MEMS) pattern reconfigurable antenna for a Ka-band application was designed, analyzed, fabricated, and measured. The proposed antenna can steer the beam among three radiating patterns (with main lobe directions of −20°, 0°, and +20° approximately) at 35 GHz by switching RF MEMS operating modes. The antenna has a low profile with a small size of 3.7 mm × 4.4 mm × 0.4 mm, and consists of one driven patch, four parasitic patches, two assistant patches, and two RF MEMS switches. The active element pattern method integrated with signal flow diagram was employed to analyze the performances of the proposed antenna. Comparing the measured results with analytical and simulated ones, good agreements are obtained.
机译:在本文中,设计,分析,制造和测量了用于Ka波段应用的硅基射频微机电系统(RF MEMS)图案可重构天线。通过切换RF MEMS工作模式,所提出的天线可以在35 GHz的三个辐射方向图(主波瓣方向分别为-20°,0°和+ 20°)中控制波束。该天线外形小巧,尺寸仅为3.7 mm×4.4 mm×0.4 mm,由一个驱动贴片,四个寄生贴片,两个辅助贴片和两个RF MEMS开关组成。结合信号流图的有源元件方向图方法被用来分析所提出的天线的性能。将测量结果与分析和仿真结果进行比较,可以得出良好的一致性。

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