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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >A-shaped wideband dielectric resonator antenna for wireless communication systems and its MIMO implementation
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A-shaped wideband dielectric resonator antenna for wireless communication systems and its MIMO implementation

机译:用于无线通信系统的A型宽带介质谐振器天线及其MIMO实现

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摘要

In this article, a new A-shaped dielectric resonator antenna (DRA) excited by a con-formal strip is proposed for wideband applications. The wide bandwidth is achieved by combining two adjacent modes that is, TM101 and TM103. The experimental results demonstrate that the proposed DRA offers an impedance bandwidth (for S11≤-10 dB) of 59.7% (3.24-6.0 GHz), covering IEEE 802.11 and U-NII bands. The antenna provides a fairly stable radiation pattern with the gain ranging from 5.29 to 7 dBi across the operating bandwidth. A dual-element multiple-input multiple-output (MIMO) system is also realized using the proposed wideband DRA. The impedance bandwidth of the dual-element MIMO antenna is 59.2% and 60.9% for Port1 and Pori2, respectively and the isolation between the ports is better than 20 dB across the bandwidth. For Portl, the gain of the MIMO antenna ranging from 6.03 to 7.45 dBi is obtained across the bandwidth. Furthermore, the diversity performance of the MIMO antenna is found to be good with envelope correlation coefficient below 0.003 over the operating band. The proposed antenna could be the potential candidate for worldwide interoperability for microwave access (WiMAX), wireless local area network (WLAN) and lower European UWB frequency band (3.4-5.0 GHz) applications.
机译:在本文中,提出了一种新的A型介质谐振器天线(DRA),该天线由共形带激励,用于宽带应用。通过组合两个相邻的模式TM101和TM103来获得较宽的带宽。实验结果表明,提出的DRA提供了59.7%(3.24-6.0 GHz)的阻抗带宽(对于S11≤-10dB),涵盖了IEEE 802.11和U-NII频段。天线提供了相当稳定的辐射方向图,在整个工作带宽范围内的增益范围为5.29至7 dBi。使用提出的宽带DRA,还可以实现双元素多输入多输出(MIMO)系统。 Port1和Pori2的双元件MIMO天线的阻抗带宽分别为59.2%和60.9%,并且端口之间的隔离度在整个带宽上都优于20 dB。对于端口1,在整个带宽上获得的MIMO天线的增益范围为6.03至7.45 dBi。此外,发现在工作频带上具有低于0.003的包络相关系数,MIMO天线的分集性能良好。拟议中的天线可能是微波访问(WiMAX),无线局域网(WLAN)和欧洲UWB较低频段(3.4-5.0 GHz)应用的全球互操作性的潜在候选者。

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