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Joint Detection and Decoding in LDPC-Based Space-Time Coded MIMO-OFDM Systems via Linear Programming

机译:基于LDPC的基于LDPC的空时编码MIMO-OFDM系统的联合检测和解码

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摘要

This work proposes a novel linear programming approach for the joint detection and decoding of LDPC-based space-time (ST) coded signals in multi-antenna orthogonal frequency division multiplexing (OFDM) systems. While traditional receivers typically decouple the detection and decoding processes as two disjunctive blocks or require iterative turbo exchange of extrinsic information between the soft detector and decoder, we formulate a joint linear program (LP) by exploiting the constraints imposed on the data symbols, training symbols, noise subspace as well as channel code. In consideration of the vast amount of LDPC parity check inequalities, we further present an adaptive procedure to significantly reduce the complexity of the joint LP receiver. Our LP-based receivers outperform existing receivers with substantial performance gains. Moreover, the proposed joint LP receiver demonstrates strong robustness when pilot symbols are sparsely arranged on subcarriers.
机译:这项工作提出了一种新颖的线性规划方法,用于在多天线正交频分复用(OFDM)系统中联合检测和解码基于LDPC的空时(ST)编码信号。传统的接收器通常将检测和解码过程解耦为两个分离块,或者需要在软检测器和解码器之间迭代涡轮交换外部信息,但我们通过利用施加在数据符号,训练符号上的约束条件来制定联合线性程序(LP) ,噪声子空间以及通道代码。考虑到大量的LDPC奇偶校验不等式,我们进一步提出了一种自适应程序,以显着降低联合LP接收器的复杂性。我们基于LP的接收器在性能上大大超过了现有接收器。此外,当将导频符号稀疏地布置在子载波上时,所提出的联合LP接收机表现出强大的鲁棒性。

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