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Differential Space-Frequency Modulation and Fast 2-D Multiple-Symbol Differential Detection for MIMO-OFDM

机译:MIMO-OFDM的差分空频调制和快速二维多符号差分检测

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The combination of differential space-frequency modulation (DSFM) with orthogonal frequency-division multiplexing (OFDM) is attractive for transmission over time-and frequency-selective multiple-input-multiple-output (MIMO) channels and detection without the need for channel-state information (CSI) at the receiver. It is well known that a simple differential detection already results in a high error floor for moderate time and frequency selectivities of the channel. A more sophisticated multiple-symbol differential detection (MSDD), which jointly processes multiple received symbols, overcomes this limitation, usually at the price of higher detection complexity. In this paper, we consider the DSFM for the MIMO-OFDM transmission and MSDD at the receiver. Inspired by previous work presented in literature, we devise a novel DSFM scheme, which makes use of spatial and/or spectral (multipath) diversity and is particularly suited for the MIMO-OFDM and power-efficient low-delay MSDD. We further investigate the application of a 2-D observation window to the MSDD (2-D MSDD) in order to exploit channel correlations in both time and frequency directions. We develop a representation of the detection problem that is amenable to tree-search decoding, whose application leads to a tremendous reduction in the MSDD complexity or a "fast" MSDD. An analytical approximation of the symbol-error rate of the 2-D MSDD for the MIMO-OFDM under spatially correlated fading is derived, which enables quick and accurate performance evaluations. Numerical and simulation results corroborate the efficacy of our approach and show that power efficiency close to that of a coherent detection with a perfect CSI is feasible in all standard fading scenarios at reasonable decoder complexity.
机译:差分空频调制(DSFM)与正交频分多路复用(OFDM)的结合非常适合通过时分和频分多输入多输出(MIMO)通道进行传输,并且无需通道即可进行检测。接收器的状态信息(CSI)。众所周知,简单的差分检测已经为通道的适度时间和频率选择性带来了较高的误码率。联合处理多个接收到的符号的更复杂的多符号差分检测(MSDD)克服了此限制,通常以更高的检测复杂性为代价。在本文中,我们考虑用于MIMO-OFDM传输的DSFM和在接收器处的MSDD。受文献中先前工作的启发,我们设计了一种新颖的DSFM方案,该方案利用了空间和/或频谱(多径)分集,特别适合于MIMO-OFDM和省电的低延迟MSDD。我们进一步研究了将2-D观测窗口应用于MSDD(2-D MSDD),以便利用时间和频率方向上的信道相关性。我们开发了适合于树搜索解码的检测问题的表示,该问题的应用导致MSDD复杂度或“快速” MSDD大大降低。推导了在空间相关的衰落下MIMO-OFDM的2-MSDD的符号错误率的解析近似值,从而可以快速准确地评估性能。数值和仿真结果证实了我们方法的有效性,并表明在合理的解码器复杂度下,在所有标准衰落情况下,接近于具有完美CSI的相干检测的功率效率都是可行的。

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