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The optimization of multiple antenna broadband wireless communications. A study of propagation, space-time coding and spatial envelope correlation in Multiple Input, Multiple Output radio systems

机译:多天线宽带无线通信的优化。多输入多输出无线电系统中的传播,时空编码和空间包络相关性研究

摘要

This work concentrates on the application of diversity techniques and space time block coding for future mobile wireless communications.udThe initial system analysis employs a space-time coded OFDM transmitter over a multipath Rayleigh channel, and a receiver which uses a selection combining diversity technique. The performance of this combined scenario is characterised in terms of the bit error rate and throughput. A novel four element QOSTBC scheme is introduced, it is created by reforming the detection matrix of the original QOSTBC scheme, for which an orthogonal channel matrix is derived. This results in a computationally less complex linear decoding scheme as compared with the original QOSTBC. Space time coding schemes for three, four and eight transmitters were also derived using a Hadamard matrix.udThe practical optimization of multi-antenna networks is studied for realistic indoor and mixed propagation scenarios. The starting point is a detailed analysis of the throughput and field strength distributions for a commercial dual band 802.11n MIMO radio operating indoors in a variety of line of sight and non-line of sight scenarios. The physical model of the space is based on architectural schematics, and realistic propagation data for the construction materials. The modelling is then extended and generalized to a multi-storey indoor environment, and a large mixed site for indoor and outdoor channels based on the Bradford University campus.udThe implications for the physical layer are also explored through the specification of antenna envelope correlation coefficients. Initially this is for an antenna module configuration with two independent antennas in close proximity. An operational method is proposed using the scattering parameters of the system and which incorporates the intrinsic power losses of the radiating elements. The method is extended to estimate the envelope correlation coefficient for any two elements in a general (N,N) MIMO antenna array. Three examples are presented to validate this technique, and very close agreement is shown to exist between this method and the full electromagnetic analysis using the far field antenna radiation patterns.
机译:这项工作集中于分集技术和空时分组编码在未来移动无线通信中的应用。 ud初始系统分析使用了多径瑞利信道上的空时编码OFDM发送器,以及使用选择结合分集技术的接收器。这种组合方案的性能以误码率和吞吐量为特征。介绍了一种新颖的四元素QOSTBC方案,它是通过对原始QOSTBC方案的检测矩阵进行重构而创建的,并为此导出了正交信道矩阵。与原始的QOSTBC相比,这导致计算上不太复杂的线性解码方案。还使用Hadamard矩阵推导了三个,四个和八个发射机的时空编码方案。 ud针对实际的室内和混合传播场景,研究了多天线网络的实际优化。起点是对在各种视线和非视线场景下在室内运行的商用双频段802.11n MIMO无线电的吞吐量和场强分布的详细分析。空间的物理模型基于建筑示意图和建筑材料的真实传播数据。然后将建模扩展并推广到多层室内环境,以及基于布拉德福德大学校园的室内和室外频道的大型混合站点。 ud还通过规范天线包络相关系数来探讨物理层的含义。 。最初,这是针对天线模块配置的,两个相邻天线非常靠近。提出了一种使用系统的散射参数的操作方法,该方法结合了辐射元件的固有功率损耗。扩展了该方法以估计通用(N,N)MIMO天线阵列中任何两个元素的包络相关系数。给出了三个实例来验证该技术,并且表明该方法与使用远场天线辐射方向图的全电磁分析之间存在非常接近的一致性。

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    Diameh Yousef Ali;

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  • 年度 2013
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