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Polarization reconfigurable antennas for space limited multiple input multiple output system

机译:极化可重构天线,用于空间受限的多输入多输出系统

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摘要

Wireless communication undergoes rapid changes in recent years. More and more people are using modern communication services, thus increasing the need for higher capacity in transmission. One of the methods that is able to meet the demands is the use of multiple antennas at both link ends known as Multiple Input Multiple Output (MIMO) system. However, for the space limited MIMO system, it is relatively difficult to accomplish good performance by using conventional antennas. Therefore, to further improve the performance offered by MIMO, Polarization Reconfigurable Antennas (PRAs) can be adopted. The diversity in polarization can be exploited to increase channel capacity. Moreover, the use of PRAs can also provide savings in terms of space and cost by arranging orthogonal polarized together instead of two physically space separation antennas. Here, single and dual port PRAs are proposed. Two techniques are deployed to achieve the PRAs are slits perturbation (switches on the radiating patch) and alteration of the feeding network (switches on the ground plane). Switching mechanism (ideal and PIN diode) is introduced to reconfigure the polarization between left-hand circular polarizations, right-hand circular polarizations, or linear polarization, operating at wireless local area network frequency band (2.4 – 2.5 GHz). Furthermore, by exploiting the odd and even mode of the coplanar waveguide structure, dual ports PRAs are realized with the ability to produce orthogonal linear polarization (LP) and circular polarization (CP) modes simultaneously. Good measured port polarization isolations (S21) of -16.3 dB and -19 dB are obtained at the frequency of 2.45 GHz for configuration A1 (orthogonal LP) and A2 (orthogonal CP), respectively. The proposed PRAs are tested in 2 x 2 MIMO indoor environments to validate their performances by using scalar power correlation method when applied as receiver in both line-of-sight (LOS) and non-line-of-sight (NLOS) scenarios. Channel capacity improvement has been achieved for spatial diversity (92.9% for LOS and 185.9% for NLOS) and polarization diversity (40.7% for LOS and 57.9% for NLOS). The proposed antenna is highly potential to be adopted to enhance the performance of the MIMO system, especially in dealing with multipath environment and space limited applications.
机译:近年来,无线通信发生了迅速的变化。越来越多的人正在使用现代通信服务,从而增加了对更高传输容量的需求。能够满足需求的一种方法是在两端都使用多个天线,称为多输入多输出(MIMO)系统。然而,对于空间受限的MIMO系统,通过使用常规天线来实现良好的性能是相对困难的。因此,为了进一步提高MIMO提供的性能,可以采用极化可重构天线(PRA)。可以利用极化的多样性来增加信道容量。而且,PRA的使用还可以通过将正交极化而不是两个物理上的空间分离天线布置在一起来节省空间和成本。在此,提出了单端口和双端口PRA。部署PRA的两种技术是缝隙扰动(辐射贴片上的开关)和馈电网络的改变(接地面上的开关)。引入了切换机制(理想和PIN二极管)以重新配置在无线局域网频带(2.4 – 2.5 GHz)上工作的左旋圆极化,右旋圆极化或线性极化之间的极化。此外,通过利用共面波导结构的奇数和偶数模式,实现了具有同时产生正交线性极化(LP)和圆极化(CP)模式的能力的双端口PRA。对于配置A1(正交LP)和A2(正交CP),在2.45 GHz的频率下分别获得了-16.3 dB和-19 dB的良好测量端口极化隔离(S21)。拟议的PRA在2 x 2 MIMO室内环境中进行了测试,以在视距(LOS)和非视距(NLOS)场景中用作接收器时通过使用标量功率相关方法来验证其性能。空间分集(LOS为92.9%,NLOS为185.9%)和极化分集(LOS为40.7%,NLOS为57.9%)已经实现了信道容量的提高。拟议中的天线极有可能被采用来增强MIMO系统的性能,尤其是在应对多径环境和空间受限的应用中。

著录项

  • 作者

    Osman Mohamed Nasrun;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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