双收发量化可以改善CDMA的误差性能

H. Efraim, N. Yacov, I. Kanter, O. Shental
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引用次数: 0

摘要

考虑了一种K用户直接序列扩频码分多址(CDMA)系统,该系统在解调端基带信号量化为(q << log2k)位。研究表明,在各种系统设置(如加性高斯白噪声(AWGN)、瑞利衰落、单用户检测、多用户检测、随机和正交扩频码)下,将CDMA调调器的K + 1级输出信号额外量化为q位,可显著提高在不可忽略的噪声方差、sigma2和用户负载、beta范围内的平均误码性能。对于随机扩频AWGN-CDMA中单用户检测的情况,该区域被明确地识别为sigma < gamma(q)yradicbeta,其中gamma(q)是依赖于q的某个前因子,并且相关的BER改进可以解析地导出为q = 1,2。对于其他检查的系统设置,提供了计算机模拟,证实了这一有趣的行为。
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Dual-Transceiver Quantization Can Improve Error Performance in CDMA
A K-user direct-sequence spread-spectrum code- division multiple-access (CDMA) system with (q << log2 K) -bit baseband signal quantization at the demodulator is considered. It is shown that additionally quantizing the K + 1 level output signal of the CDMA modulator into q bits improves significantly the average bit-error performance in a non-negligible regime of noise variance, sigma2, and user load, beta, under various system settings, like additive white Gaussian noise (AWGN), Rayleigh fading, single-user detection, multi-user detection, random and orthogonal spreading codes. For the case of single-user detection in random spreading AWGN-CDMA, this regime is identified explicitly as sigma < gamma(q)yradicbeta, where gamma(q) is a certain pre-factor depending on q, and the associated BER improvement is derived analytically for q = 1, 2. For the other examined system settings, computer simulations are provided, corroborating this interesting behavior.
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