Performance of convolutionally coded CDMA/OFDM in a frequency-time selective fading channel and its near-far resistance

Kenneth Fazel
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引用次数: 33

Abstract

The OFDM technique is an interesting approach in mobile communications in order to achieve a high spectral efficiency and to combat the frequency selectivity of the channel. Another interesting technique is a CDMA system with Rake-receiver. The main advantages of CDMA are well known, but its capacity is limited by multiuser interference. The aim of this study is to analyze the performance of a convolutionally-coded CDMA system combined with OFDM in a frequency/time selective fading channel, taking into account the near-far problem. This combination allows one to perform a maximum-likelihood detection (MLD), to use the available spectrum in an efficient way, to exploit frequency diversity and time diversity (provided by channel coding), and to retain many advantages of a CDMA system with a simpler hardware realization. An example for a mobile communication system using convolutionally-coded CDMA/OFDM with Walsh-Hadamard code-spreading for the downlink (base-mobile) is studied. The performance of a MLD is examined by taking into account the near-far problem. It is shown that the MLD is very robust to the near-far problem. It is also shown that by using BPSK modulation, in a 1.28 MHz bandwidth, one can transmit 64 active users at rate of about 10.34 kbit/sec.<>
频率时间选择性衰落信道中卷积编码CDMA/OFDM的性能及其近远阻力
OFDM技术在移动通信中是一种有趣的方法,以实现高频谱效率和对抗信道的频率选择性。另一种有趣的技术是带有rake接收器的CDMA系统。CDMA的主要优点是众所周知的,但是它的容量受到多用户干扰的限制。本研究的目的是分析在频率/时间选择性衰落信道中,考虑远近问题的卷积编码CDMA系统与OFDM相结合的性能。这种组合允许人们执行最大似然检测(MLD),以有效的方式使用可用频谱,利用频率分集和时间分集(由信道编码提供),并以更简单的硬件实现保留CDMA系统的许多优点。研究了一种基于卷积编码的CDMA/OFDM的移动通信系统,该系统的下行链路为沃尔什-哈达玛德码扩展。通过考虑远近问题来检验MLD的性能。结果表明,MLD对近远问题具有很强的鲁棒性。还表明,通过使用BPSK调制,在1.28 MHz带宽下,可以以约10.34 kbit/sec的速率传输64个活跃用户。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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