一种新的多速率CI/MC-CDMA系统码分配算法

M. Mukherjee, Preetam Kumar
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引用次数: 3

摘要

本文介绍了一种多速率载波干涉/多载波码分多址(CI/CM-CDMA)系统的高效码分配算法,可同时支持高、低数据速率传输。高优先级用户通过分配所有子载波实现高数据速率传输,而低数据速率用户通过奇偶子载波交替分配逐步增加。通过使用奇(偶)子载波的偶(奇)CI码的相移量为π/2,以及使用奇(偶)子载波的奇(偶)CI码的相移量为−π/2,可以降低不同码型之间的相互关联,所有这些都是相对于分配给支持高数据速率传输的正交CI码进行测量的。该算法通过减少多址干扰,保证了额外用户的加入,提高了误码率(BER)性能。仿真结果表明,与文献[9]提出的方案相比,新的码分配方案在低信噪比下允许更多的用户使用。仿真结果还表明,对于3N系统,与固定分配相比,新代码分配可使PAPR降低1.9 dB[9]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new code allocation algorithm for multirate CI/MC-CDMA system
This paper introduces an efficient code allocation algorithm for multirate carrier interferometry/multicarrier code division multiple access (CI/CM-CDMA) system through simultaneous support of high and low data rate transmission. High priority users are assigned all subcarriers to transmit at high data rate, while low data rate users are gradually increased through alternate allocation of odd-even subcarriers. The cross-correlation between different code pattern is reduced through phase shift of even (odd) CI code using odd (even) sub-carriers by an amount of π/2 and odd (even) CI code using odd (even) sub-carriers by −π/2, all measured with respect to orthogonal CI codes assigned to support high data rate transmission. This algorithm ensures addition of extra users with improved bit error rate (BER) performance by reducing of multiple access interference (MAI). Simulation results show that new code allocation scheme allows more users at a low signal-to-noise ratio (SNR) compared to scheme proposed in [9]. Simulation results also show that new code allocation reduces PAPR by 1.9 dB for 3N system compared to fixed allocation [9].
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