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Coded transmit diversity in CDMA over Nakagami-m fading channels

机译:Nakagami-m衰落信道上CDMA中的编码传输分集

摘要

With applications such as video conferencing, extensive web browsing and live video streaming, future wireless systems become extremely demanding in terms of high data rates and improved signal quality. In this thesis the performance of a space-time spreading transmit diversity scheme is examined over a frequency-flat Nakagami- m fading channel. The Nakagami- m channel model is considered as it is well known for modeling signal fading conditions ranging from severe to moderate, to light fading or no fading, through its parameter m. We also propose in this thesis a coded transmit diversity scheme which is based on a combination of a convolutional code with a space-time transmit diversity scheme that uses direct-sequence code division multiple access (DS-CDMA) for multiuser access. Our focus will be on the uplink of the communication system. The space-time scheme employs N = 2 and N r antennas at the mobile station (MS) side and at the base station (BS) side respectively. DS-CDMA is used to support many users and a linear decorrelator detector is used to combat the effect of multiuser interference. We study the performance of both the uncoded and coded transmit diversity schemes over slow fading and fast fading channels. In all cases, the investigations start by determining the probability density function (PDF) of the signal to interference and noise ratio at the output of the space-time combiner at the BS receiver side. Using this PDF we derive a closed-form (or an approximation) expression for the bit error rate (BER) of the system under consideration. The accuracy of the PDF and BER expressions are verified when compared to simulation results for different values of the fading figure m and for different combinations of transmit and receive antennas. In the case of the coded space-time transmit diversity scheme, the pairwise error probability and the corresponding BER upper bounds are obtained for fast and slow fading channels. The derived error bounds, when compared to system simulations, are shown to be tight at high signal-to-noise ratios. Furthermore, our analytical results explicitly show the achieved system diversity in terms of the number of transmit and receive antennas and the fading figure m. When the coded space-time scheme is considered, its diversity is shown to be a function of the minimum free distance d free of the convolutional code used. Furthermore we show that the diversity of the different schemes considered is always independent of the system load
机译:随着视频会议,广泛的Web浏览和实时视频流等应用的发展,未来的无线系统在高数据速率和改善的信号质量方面变得极为苛刻。在本文中,研究了时空扩展中频衰落信道上空时扩展传输分集方案的性能。 Nakagamim信道模型之所以被认为是众所周知的,是因为通过其参数m对信号衰落条件(从重度到中度,轻度衰落或无衰落)进行建模。在本文中,我们还提出了一种编码传输分集方案,该方案基于卷积码与空时传输分集方案的组合,该方案使用直接序列码分多址(DS-CDMA)进行多用户访问。我们的重点将放在通信系统的上行链路上。时空方案分别在移动站(MS)侧和基站(BS)侧使用N = 2和N r天线。 DS-CDMA用于支持许多用户,而线性去相关器检测器用于应对多用户干扰的影响。我们研究了慢衰落和快衰落信道上未编码和已编码发射分集方案的性能。在所有情况下,研究都始于确定BS接收机一侧的时空组合器输出端的信噪比和噪声比的概率密度函数(PDF)。使用此PDF,我们可以得出所考虑系统的误码率(BER)的封闭式(或近似值)表达式。与衰落图m的不同值以及发射和接收天线的不同组合的仿真结果相比,PDF和BER表达式的准确性得到了验证。在编码时空发射分集方案的情况下,针对快衰落信道和慢衰落信道获得了成对错误概率和相应的BER上限。与系统仿真相比,得出的误差范围在高信噪比下表现得很严格。此外,我们的分析结果明确显示了在发送和接收天线的数量以及衰落系数m方面已实现的系统多样性。当考虑编码时空方案时,它的分集显示为最小自由距离d的函数,其中最小自由距离d不使用所使用的卷积码。此外,我们表明,所考虑的不同方案的多样性始终独立于系统负载

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    Sacramento Ariel;

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  • 年度 2008
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