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Throughput measurement of a dual-band MIMO rectangular dielectric resonator antenna for LTE applications

机译:LTE应用的双频MIMO矩形介电共振器天线的吞吐量测量

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摘要

An L-shaped dual-band multiple-input multiple-output (MIMO) rectangular dielectric resonator antenna (RDRA) for long term evolution (LTE) applications is proposed. The presented antenna can transmit and receive information independently using fundamental TE111 and higher order TE121 modes of the DRA. TE111 degenerate mode covers LTE band 2 (1.85–1.99 GHz), 3 (1.71–1.88 GHz), and 9 (1.7499–1.7849 GHz) at fr = 1.8 GHz whereas TE121 covers LTE band 7 (2.5–2.69 GHz) at fr = 2.6 GHz, respectively. An efficient design method has been used to reduce mutual coupling between ports by changing the effective permittivity values of DRA by introducing a cylindrical air-gap at an optimal position in the dielectric resonator. This air-gap along with matching strips at the corners of the dielectric resonator keeps the isolation at a value more than 17 dB at both the bands. The diversity performance has also been evaluated by calculating the envelope correlation coefficient, diversity gain, and mean effective gain of the proposed design. MIMO performance has been evaluated by measuring the throughput of the proposed MIMO antenna. Experimental results successfully validate the presented design methodology in this work.
机译:提出了一种用于长期演进(LTE)应用的L形双频多输入多输出(MIMO)矩形介质谐振器天线(RDRA)。提出的天线可以使用DRA的基本TE111模式和高阶TE121模式独立发送和接收信息。 TE111简并模式在fr = 1.8 GHz时覆盖LTE频段2(1.85-1.99 GHz),3(1.71-1.88 GHz)和9(1.7499-1.7849 GHz),而TE121在fr =时覆盖LTE 7频段(2.5–2.69 GHz)。分别为2.6 GHz。通过在介电谐振器的最佳位置引入圆柱形气隙来改变DRA的有效介电常数,已使用一种有效的设计方法来减少端口之间的相互耦合。气隙以及介质谐振器拐角处的匹配带将两个频段的隔离度保持在17 dB以上。分集性能还通过计算包络相关系数,分集增益和所提出设计的平均有效增益进行了评估。 MIMO性能已经通过测量建议的MIMO天线的吞吐量进行了评估。实验结果成功验证了这项工作中提出的设计方法。

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