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Joint Iterative Channel Estimation and Frequency-Domain Turbo Equalization for Single-Carrier Spatial Modulation

机译:单载波空间调制的联合迭代信道估计和频域Turbo均衡

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摘要

Single-carrier frequency-domain turbo equalization (SC-FDTE) has gained widespread adoption in the emerging broadband spatial modulation (SM) systems operating in frequency-selective channels, where the channel model considered is a quasi-static Rayleigh fading channel. In this paper, a new class of robust FDTE designs based on the minimum mean-square error (MMSE) criterion is conceived for broadband single-carrier SM (SC-SM) systems relying on realistic imperfect channel knowledge. First, a robust time-domain soft-decision feedback (TDSDF)-aided FDTE is proposed to cope with channel estimation errors at the receiver. Furthermore, its robust frequency-domain soft-decision feedback (FDSDF)-aided counterpart is derived to offer a low-complexity approximate solution. Finally, by exploiting the carefully selected reliable soft-decision output of the channel decoder as pilots, we refine the resultant decision-directed channel estimation. As a benefit, the performance of the two robust FDTEs can be further improved. Both our simulation results and our extrinsic information transfer (EXIT) chart analysis demonstrate that the proposed robust FDTEs achieve significant performance improvements over the conventional FDTEs.
机译:单载波频域turbo均衡(SC-FDTE)已在工作于频率选择信道的新兴宽带空间调制(SM)系统中得到了广泛采用,在该系统中,所考虑的信道模型是准静态瑞利衰落信道。在本文中,针对依赖现实的不完美信道知识的宽带单载波SM(SC-SM)系统,提出了一种基于最小均方误差(MMSE)准则的新型鲁棒FDTE设计。首先,提出了一种鲁棒的时域软判决反馈(TDSDF)辅助FDTE,以应对接收机处的信道估计误差。此外,还派生了其强大的频域软决策反馈(FDSDF)辅助对象,以提供低复杂度的近似解决方案。最后,通过将经过精心选择的信道解码器的可靠软判决输出用作导频,我们完善了最终的决策导向信道估计。有益的是,可以进一步提高两个强大的FDTE的性能。我们的仿真结果和我们的外部信息传输(EXIT)图表分析均表明,与常规FDTE相比,建议的鲁棒FDTE实现了显着的性能提升。

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