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Reliability-based Partial Parallel Interference Cancellation and Iterative Decoding for DS-CDMA over Fading Channels

机译:基于可靠性的部分并行干扰消除和DS-CDMA对衰落通道的迭代解码

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Multistage Partial Parallel Interference Cancellation (PPIC) is proposed for Turbo-encoded DS-CDMA systems where the partial cancellation factors are derived based on the Log-likelihood Ratios (LLR's) of each user's bit. The LLR is obtained based on an enhanced estimate of the variance of the Multiple-Access Interference (MAI) and Residual MAI (RMAI) plus noise. The (R)MAI terms are modeled as conditionally Gaussian with a time-dependent variance that is a function of the user cross-correlations and fading coefficients. Significant performance gains due to the improved LLR's are realized over PPIC schemes using fixed variance estimates in frequency non-selective Rayleigh fading channels. The performance gap is greater when two stages of the improved PPIC are used. Reduced complexity forms of the variance estimates and LLR's are proposed and also shown to give a performance advantage.
机译:为基于每个用户位的日志似然比(LLR)导出部分取消因子的Turbo编码DS-CDMA系统提出了多级局部并行干扰消除(PPIC)。基于增强的多址干扰(MAI)和残差MAI(RMAI)加噪声的变化的增强估计来获得LLR。 (R)MAI术语以条件性高斯为有条件地为单位的差异,该方差是用户交叉相关和衰落系数的函数。由于频率非选择性瑞利衰落通道中的固定方差估计,通过PPIC方案实现了由于改进的LLR引起的显着性能提升。当使用改进的PPIC的两个阶段时,性能间隙更大。提出了减少的方差估计和LLR的复杂性形式,并显示出具有性能优势。

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