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Design and analysis of space-time block and trellis coding schemes for single-band UWB communications systems

机译:单频段UWB通信系统的空时块和网格编码方案的设计与分析

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摘要

Ultra Wide-Band (UWB) technology has recently attracted much research interest due to its appealing features in short-range mobile communications. These features include high-data rates, low power consumption, multiple-access communications and precise positioning capabilities. Space-Time Coding (STC) techniques, such as block coding and trellis coding, are known to be simple and practical ways to increase both the spectral efficiency and the capacity in wireless communications. The the- sis aims at designing robust and efficient space-time coding schemes well adapted to single-band UWB signalling. Thus, this work incorporates a fine analysis of a stan- dard Single Input Single Output (SISO) single-band UWB system, scrutinising every important aspect of this system including transceiver structure, channel modelling, multiple-access techniques and detection process. Research also leads to the deriva- tion of a novel closed-form approximation for the average probability of bit-error for single-band UWB systems. This in-depth study highlights drawbacks inherent to UWB systems such as time-jitter effects or rake-receiver complexity and proposes schemes that benefit from spatial diversity to mitigate these problems. Thus, the thesis concentrates on the design of new multiple-antenna space-time coding systems tailored for UWB communications. As a result, this work derives and generates gen- eralised full-rate space-time block codes based on orthogonal pulses to capture both spatial and multipath diversities. Space-time trellis coded modulation is then revis- ited to further improve the spectral efficiency limit and to deliver the high-data rates promised by UWB technology. A new version of space-time trellis coding is developed for the peculiar UWB signalling structure. Finally, thanks to a novel closed-form ap- proximation, a theoretical comparison is undertaken between any SISO-UWB system and the multiple antenna UWB systems proposed in this thesis. The results clearly underline the impact of STC on a single-band UWB system in terms of enhanced robustness against timing-jitter effects, higher spectral efficiency and capacity im- provement. These advantages are finally confirmed through the numerical evaluation of the error-rate performance.
机译:由于其在短距离移动通信中的吸引力,超宽带(UWB)技术最近引起了很多研究兴趣。这些功能包括高数据速率,低功耗,多路访问通信和精确定位功能。诸如块编码和网格编码的空时编码(STC)技术是增加无线通信中频谱效率和容量的简单实用的方法。本文旨在设计一种健壮而有效的时空编码方案,该方案非常适合单频带UWB信令。因此,这项工作结合了对标准单输入单输出(SISO)单频带UWB系统的精细分析,仔细检查了该系统的每个重要方面,包括收发器结构,信道建模,多址技术和检测过程。研究还为单频带UWB系统的平均误码概率推导了一种新颖的闭式近似。这项深入的研究突出了UWB系统固有的缺点,例如时间抖动效应或瑞克接收机的复杂性,并提出了受益于空间分集的方案来缓解这些问题。因此,本文着重于为UWB通信量身定制的新型多天线时空编码系统的设计。结果,这项工作基于正交脉冲来导出并生成通用的全速率空时分组码,以捕获空间和多径分集。然后,对时空网格编码调制进行了修订,以进一步改善频谱效率极限并提供UWB技术所承诺的高数据速率。针对特殊的UWB信令结构,开发了新版本的时空网格编码。最后,由于采用了新颖的闭式近似,本文对任何SISO-UWB系统与本文提出的多天线UWB系统进行了理论比较。结果清楚地说明了STC对单频带UWB系统的影响,即增强了其对时序抖动影响的鲁棒性,更高的频谱效率和容量提高。这些优势最终通过错误率性能的数值评估得到证实。

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    Héliot F;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 English
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