首页> 外文OA文献 >Investigation, Design and Implementation of MIMO Antennas for Mobile Phones. Simulation and Measurement of MIMO Antennas for Mobile Handsets and Investigations of Channel Capacity of the Radiating Elements Using Spatial and Polarisation Diversity Strategies.
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Investigation, Design and Implementation of MIMO Antennas for Mobile Phones. Simulation and Measurement of MIMO Antennas for Mobile Handsets and Investigations of Channel Capacity of the Radiating Elements Using Spatial and Polarisation Diversity Strategies.

机译:手机MIMO天线的研究,设计和实现。用于移动手机的MIMO天线的仿真和测量以及使用空间和极化分集策略研究辐射元件的信道容量。

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摘要

The objectives of this work were to investigate, design and implement Multiple-Input Multiple-Output (MIMO) antenna arrays for mobile phones. Several MIMO antennas were developed and tested over various wireless-communication frequency bands. The radiation performance and channel capacity of these antennas were computed and measured: the results are discussed in the context of the frequency bands of interest.udA comprehensive study of MIMO antenna configurations such as 2 × 1, 3 × 1, 2 × 2 and 3 × 3, using polarisation diversity as proposed for future mobile handsets, is presented. The channel capacity is investigated and discussed, as applying to Rayleigh fading channels with different power spectrum distributions with respect to azimuth and zenith angles. The channel capacity of 2 × 2 and 3 × 3 MIMO systems using spatial polarisation diversity is presented for different antenna designs. The presented results show that the maximum channel capacity for an antenna contained within a small volume can be reached with careful selection of the orthogonal spatial fields. The results are also compared against planar array MIMO antenna systems, in which the antenna size considered was much larger.udA 50% antenna size reduction method is explored by applying magnetic wall concept on the symmetry reference of the antenna structure. Using this method, a triple dual-band inverted-F antenna system is presented and considered for MIMO application. Means of achieving minimum coupling between the three antennas are investigated over the 2.45 GHz and 5.2 GHz bands.udA new 2 2 MIMO dual-band balanced antenna handset, intended to minimise the coupling with the handset and human body was proposed, developed and tested. The antenna coupling with the handset and human hand is reported in terms the radiation performance and the available channel capacity.udIn addition, a dual-polarisation dipole antenna is proposed, intended for use as one of three collocated orthogonal antennas in a polarisation-diversity MIMO communication system. The antenna actually consists of two overlaid electric and magnetic dipoles, such that their radiation patterns are nominally identical but they are cross-polarised and hence only interact minimally.
机译:这项工作的目的是研究,设计和实现用于手机的多输入多输出(MIMO)天线阵列。在各种无线通信频带上开发并测试了几种MIMO天线。计算并测量了这些天线的辐射性能和信道容量:在感兴趣的频段内讨论了结果。 ud对MIMO天线配置(例如2×1、3×1、2×2和2×1和2×3)进行了全面研究提出了使用未来移动电话建议的极化分集的3×3。研究并讨论了信道容量,并将其应用于相对于方位角和天顶角具有不同功率谱分布的瑞利衰落信道。针对不同的天线设计,提出了使用空间极化分集的2×2和3×3 MIMO系统的信道容量。呈现的结果表明,通过仔细选择正交空间场,可以达到容纳在小体积内的天线的最大信道容量。还将结果与平面阵列MIMO天线系统进行了比较,后者考虑的天线尺寸要大得多。 ud通过将磁壁概念应用于天线结构的对称参考,探索了将天线尺寸减小50%的方法。使用此方法,提出了一种三重双频倒F天线系统,并考虑用于MIMO应用。研究了在2.45 GHz和5.2 GHz频带上实现三根天线之间最小耦合的方法。 ud提出,开发和测试了一种新的2 2 MIMO双频平衡天线手机,旨在最大程度地减少与手机和人体的耦合。 。报告了与手机和人手耦合的天线的辐射性能和可用信道容量。 ud此外,提出了双极化偶极子天线,旨在用作极化分集中的三个并置正交天线之一。 MIMO通信系统。天线实际上由两个重叠的电偶极子和磁偶极子组成,因此它们的辐射方向图名义上是相同的,但它们是交叉极化的,因此相互作用极小。

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  • 作者

    Usman Muhammad;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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