Multiple-Encoder Layered Space-Time-Frequency Architecture with QRM-MLD Detection

Yuanliang Huang, K. Higuchi, M. Sawahashi
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Abstract

In this paper, in order to achieve the available spatial, temporal and frequency diversities, and also make the system implementation feasible for high speed orthogonal frequency division multiplexing (OFDM) multiple-input multiple-output (MIMO) multiplexing, a novel LSTF transmitter architecture with multiple channel encoders is proposed with each independently coded information sub-stream being threaded in the three-dimensional (3-D) space-time-frequency transmission resource array. The performance of a receiver consisting of a maximum-likelihood detector with QR decomposition and M-algorithm (QRM-MLD) is exploited, by employing irregular low-density parity-check (LDPC) code as the channel code. The threaded distribution of each coded information sub-stream in the proposed LSTF makes it to achieve the spatial, temporal and frequency diversities the same as the conventional single-encoder LSTF where coding is applied across the whole information stream, and simulation results show that the performance of the proposed multiple-encoder LSTF architecture is very close to that of the conventional single-encoder LSTF. However, due to the use of multiple parallel encoders/decoders with a shorter codeword length, the proposed LSTF architecture has much lower hardware processing speed and complexity than the conventional LSTF.
基于QRM-MLD检测的多编码器分层空时频结构
为了实现可用的空间分集、时间分集和频率分集,并使系统实现高速正交频分复用(OFDM)多输入多输出(MIMO)多路复用,本文提出了一种具有多通道编码器的新型LSTF发射机架构,其中每个独立编码的信息子流在三维(3d)空时频传输资源阵列中线程化。采用不规则低密度奇偶校验码(LDPC)作为信道码,利用QR分解和m算法(QRM-MLD)组成的最大似然检测器的性能。所提LSTF中各编码信息子流的线程化分布使得其具有与传统单编码器LSTF相同的空间、时间和频率分集,在整个信息流中进行编码,仿真结果表明,所提多编码器LSTF架构的性能与传统单编码器LSTF非常接近。然而,由于使用了多个并行编码器/解码器,且码字长度较短,因此所提出的LSTF架构比传统的LSTF具有更低的硬件处理速度和复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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