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Low-Cost Dual-Band Circularly Polarized Switched-Beam Array for Global Navigation Satellite System

机译:用于全球导航卫星系统的低成本双频圆偏振开关波束阵列

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This paper presents the design and development of a dual-band switched-beam microstrip array for global navigation satellite system (GNSS) applications such as ocean reflectometry and remote sensing. In contrast to the traditional Butler matrix, a simple, low cost, broadband and low insertion loss beam switching feed network is proposed, designed and integrated with a dual band antenna array to achieve continuous beam coverage of $pm 25^{circ}$ around the boresight at the L1 (1.575 GHz) and L2 (1.227 GHz) bands. To reduce the cost, microstrip lines and PIN diode based switches are employed. The proposed switched-beam network is then integrated with dual-band step-shorted annular ring (S-SAR) antenna elements in order to produce a fully integrated compact-sized switched-beam array. Antenna simulation results show that the switched-beam array achieves a maximum gain of 12 dBic at the L1 band and 10 dBic at the L2 band. In order to validate the concept, a scaled down prototype of the simulated design is fabricated and measured. The prototype operates at twice of the original design frequency, i.e., 3.15 GHz and 2.454 GHz and the measured results confirm that the integrated array achieves beam switching and good performance at both bands.
机译:本文介绍了用于全球导航卫星系统(GNSS)应用(例如海洋反射法和遥感)的双波段开关波束微带阵列的设计和开发。与传统的巴特勒矩阵相反,提出了一种简单,低成本,宽带和低插入损耗的波束切换馈电网络,并与双频带天线阵列进行了设计和集成,以实现大约25 pm左右的连续波束覆盖。 L1(1.575 GHz)和L2(1.227 GHz)频段的视轴。为了降低成本,采用了微带线和基于PIN二极管的开关。然后,将拟议的开关波束网络与双波段短缩环形环(S-SAR)天线元件集成在一起,以产生完全集成的紧凑型开关波束阵列。天线仿真结果表明,开关波束阵列在L1频段的最大增益为12 dBic,在L2频段的最大增益为10 dBic。为了验证该概念,制造并测量了按比例缩小的模拟设计原型。该原型的工作频率是原始设计频率的两倍,即3.15 GHz和2.454 GHz,并且测量结果证实了集成阵列在两个频段上均实现了光束切换和良好的性能。

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