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Performance of Iterative Decoding Algorithm in the Adaptive Modulation and Coding System

机译:自适应调制编码系统中迭代译码算法的性能

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摘要

In this paper, we propose and analyze an Adaptive Modulation System with optimal Turbo Coded V-BLAST (Vertical-Bell-lab Layered Space-Time) technique that adopts the extrinsic information from MAP (Maximum A Posteriori) Decoder with Iterative Decoding as a priori probability in two decoding procedures of V-BLAST scheme; the ordering and the slicing. Also, we consider and compare The Adaptive Modulation System using conventional Turbo Coded V-BLAST technique that is simply combined V-BLAST scheme with Turbo Coding scheme and that is decoded by the ML(Maximum Likelihood) decoding algorithm. In addition, we apply MIMO (Multiple Input Multiple Output) schemes to the systems for more performance improvement. The result indicates that the proposed systems achieve a better throughput performance than the conventional systems in the whole SNR range. And in terms of the throughput performance, the suggested system is close proximity to the conventional system using the ML decoding algorithm. In addition, the simulation result shows that the maximum throughput improvement in each MIMO scheme is respectively about 421 kbps, 545 kbps, and 880 kbps. It is suggested that the effect of the proposed decoding algorithm accordingly gets higher as the number of system antenna increases.
机译:在本文中,我们提出并分析了一种采用最优Turbo编码V-BLAST(垂直贝尔实验室分层时空)技术的自适应调制系统,该技术采用MAP(最大后验)解码器的外在信息,并具有迭代解码作为先验V-BLAST方案的两个解码过程中的概率;排序和切片。此外,我们考虑并比较了使用传统Turbo编码V-BLAST技术的自适应调制系统,该技术简单地将V-BLAST方案与Turbo编码方案结合在一起,并通过ML(最大似然)解码算法进行解码。此外,我们将MIMO(多输入多输出)方案应用于系统,以提高性能。结果表明,所提出的系统在整个SNR范围内均比常规系统具有更好的吞吐性能。并且在吞吐量性能方面,建议的系统与使用ML解码算法的常规系统非常接近。此外,仿真结果表明,每种MIMO方案的最大吞吐量提高分别约为421 kbps,545 kbps和880 kbps。建议随着系统天线数量的增加,所提出的解码算法的效果也随之提高。

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