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Artificial Magnetic Conductor Based Miniaturized Frequency Re-configurable Dielectric Resonator Antenna for 5G and WBAN Applications

机译:基于人工磁导体的小型频率可重新配置介质谐振器天线5G和WBAN应用

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摘要

In this work a novel miniaturized frequency reconfigurable Dielectric Resonator antenna using Artificial Magnetic Conductor (AMC) surface is proposed. The prototype is set to work for 5G mid-band frequencies and Wireless Body Area Network (WBAN) applications. The work consists of two parts: firstly, the miniaturization of the prototype using AMC surface and secondly using the same AMC surface to reconfigure the frequency to another wireless application. Using AMC surface, the DR volume is reduced by 85% percent. Connecting the AMC unit cells through ideal switches (micro-trip slabs) re-configures the DR for different frequency. The overall performance observed before switching as well as after switching in both the cases is promising. The design is fabricated for performance analysis. A close agreement is reported between simulated and measured values of the reflection coefficients, radiation pattern, gain and efficiencies. The prototype has stable radiation pattern for both the operating frequencies. The impedance bandwidth values for both the resonance frequencies are 14.2% and 16% respectively. The prototype has a maximum gain of 6.8dBi and a maximum efficiency of 88%.
机译:在这项工作中,提出了一种新颖的小型化频率可重新配置使用人造磁导体(AMC)表面的频率可重新配置介质谐振器天线。原型设置为5G中频频率和无线体区域网络(WBAN)应用。工作包括两部分:首先,使用AMC表面的原型的小型化,其次使用相同的AMC表面来重新配置频率到另一个无线应用。使用AMC表面,DR体积减少85%。通过理想的开关(微跳闸板)连接AMC单元电池重新配置不同频率的DR。在切换之前观察到的整体性能以及在两种情况下切换后都具有很大。设计是为了性能分析。在反射系数,辐射模式,增益和效率的模拟和测量值之间报告了密切协议。原型具有稳定的辐射图案,用于操作频率。谐振频率的阻抗带宽值分别为14.2%和16%。原型的最大增益为6.8dB1,最大效率为88%。

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