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Parallel-Trellis Turbo Equalizers for Sparse-Coded Transmission over SISO and MIMO Sparse Multipath Channels

机译:用于SISO和MIMO稀疏多径信道上稀疏编码传输的并行网格Turbo均衡器

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This paper describes a low-complexity turbo equalizer for coded sparse multipath channels whose length can span hundreds of symbol intervals. First, for single-input-single-output (SISO) systems, an existing parallel-trellis framework, which consists of a bank of identical regular trellises, is exploited to construct the maximum a posteriori (MAP) equalizer in the turbo equalizer. This MAP equalizer, when combined with prefiltering, can equalize a broad selection of sparse multipath channels, including those with nonminimum phase, by using only M-state trellises, where M is the constellation size. For multiple-input-multiple-output (MIMO) systems, a MIMO prefilter and a bank of M-state parallel-trellis MAP equalizers are deployed according to a layering structure. The total number of states needed is only NTM, where NT is the number of transmit antennae. For both SISO and MIMO systems, a class of binary convolutional and turbo codes having sparse generator polynomials are chosen as the coding schemes. These codes partially integrate channel interleaving with encoding, which allows a simple channel interleaver with low latency and memory storage requirement to be employed. The MAP decoders for these codes can also be implemented with the same parallel-trellis framework as the MAP equalizers. Overall, parallel processing is supported throughout the turbo equalizers. The amount of computational time reduction when compared to a turbo equalizer using a single-trellis MAP equalizer and decoder is proportional to the number of trellises in the parallel-trellis MAP equalizer and decoder. The performance of the parallel-trellis turbo equalizers is evaluated on static and Rayleigh fading sparse multipath channels via Monte Carlo simulations
机译:本文介绍了一种用于编码稀疏多径信道的低复杂度turbo均衡器,该信道的长度可以跨越数百个符号间隔。首先,对于单输入单输出(SISO)系统,利用了由一组相同的规则网格组成的现有并行网格框架,以在Turbo均衡器中构造最大后验(MAP)均衡器。当与预滤波结合使用时,该MAP均衡器可以通过仅使用M状态网格(其中M是星座图大小)来均衡稀疏多径通道的广泛选择,包括具有非最小相位的通道。对于多输入多输出(MIMO)系统,根据分层结构部署MIMO预滤波器和M状态并行网格MAP均衡器库。所需的状态总数仅为NTM,其中NT是发射天线的数目。对于SISO和MIMO系统,都选择一类具有稀疏生成多项式的二进制卷积和turbo码作为编码方案。这些代码部分地将信道交织与编码集成在一起,这允许采用具有低等待时间和存储器存储要求的简单信道交织器。这些代码的MAP解码器也可以使用与MAP均衡器相同的并行网格框架来实现。总体而言,整个Turbo均衡器均支持并行处理。与使用单网格MAP均衡器和解码器的Turbo均衡器相比,计算时间减少量与并行网格MAP均衡器和解码器中的网格数量成比例。通过蒙特卡洛仿真,在静态和瑞利衰落稀疏多径信道上评估了并行网格涡轮均衡器的性能

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