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Outage Performance Analysis and Code Design for Three-Stage MMSE Turbo Equalization in Frequency-Selective Rayleigh Fading Channels

机译:选频瑞利衰落信道中三阶段MMSE Turbo均衡的停电性能分析和代码设计

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This paper analyzes the outage performance of soft-cancellation frequency-domain minimum-mean-square error (SC FD-MMSE) turbo equalization in a serially concatenated coded modulation scheme over frequency-selective Rayleigh fading channels with exponential delay-power profile. The convergence behavior of this iterative three-stage system is evaluated with the aid of correlation charts. Based on the convergence characteristic of the equalizer and the inner and outer channel decoders, we derive a simple closed-form approximation on the outage probability of the turbo receiver. In particular, using a union-bounding technique and a specific central limit theorem, it is shown that the outage probability can be well approximated by a sum of complementary Gaussian error functions. A design criterion based on the resultant analytical expression is then proposed to construct outer encoders that minimize the outage probability of three-stage turbo systems employing irregular recursive convolutional (IRC) codes. We provide examples of optimized IRC-based outer encoders and investigate by simulation the performance improvement obtained by optimized IRC-coded turbo equalization over turbo equalization using regular recursive convolutional codes. Numerical results of outage performance simulations in channels with different delay-power profiles are presented to verify the analysis.
机译:本文分析了在具有指数延迟功率分布的频率选择瑞利衰落信道上,在串行级联编码调制方案中,软取消频域最小均方误差(SC FD-MMSE)Turbo均衡的中断性能。借助相关图评估此迭代三阶段系统的收敛行为。基于均衡器以及内部和外部通道解码器的收敛特性,我们推导出了turbo接收机中断概率的简单闭合形式近似值。尤其是,使用联合边界技术和特定的中心极限定理表明,可以通过互补的高斯误差函数之和很好地估计中断概率。然后,提出了一种基于结果分析表达式的设计标准,以构造外部编码器,以最小化使用不规则递归卷积(IRC)码的三级涡轮系统的中断概率。我们提供了基于IRC的优化外部编码器的示例,并通过仿真研究了通过使用常规递归卷积码优化IRC编码的Turbo均衡优于Turbo均衡获得的性能提升。给出了具有不同延迟功率分布的信道中的中断性能仿真的数值结果,以验证分析。

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