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Transmitter-Receiver Designs for Highly Frequency Selective Channels in MIMO FBMC Systems

机译:MIMO FBMC系统中高频选择性信道的收发器设计

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This paper studies the MIMO applicability to filter bank based multicarrier (FBMC) modulations for low coherence bandwidth channels. Under these conditions the channel frequency response cannot be modeled flat at a subcarrier level. This implies that the techniques originally devised for OFDM do not restore the orthogonality between subcarriers when they are directly applied to FBMC. Aiming at circumventing this problem we propose the design of two MIMO FBMC schemes, which are based on a new subband processing. The figures of merit that govern the design of the first and second scheme are the signal to leakage plus noise ratio (SLNR) and the signal to interference plus noise ratio (SINR), respectively. However, we do not restrict the analysis to the design of a new subband processing but we also carry out an asymptotic analysis of the complexity as well as tackle the problem of estimating the channel. Simulation-based results have demonstrated that the addressed solutions clearly outperform previous MIMO FBMC schemes in terms of BER. In comparison to OFDM, the devised techniques are able to remain competitive even if the knowledge of the channel state information is not perfect. In those scenarios where the cyclic prefix (CP) length is not sufficiently large to avoid inter block interference, the proposed designs are able to reduce the BER. However, the price that should be paid is the increase of the complexity.
机译:本文研究了MIMO在低相干带宽信道上基于滤波器组的多载波(FBMC)调制的适用性。在这些条件下,无法在子载波级别上对信道频率响应进行平坦建模。这意味着,最初为OFDM设计的技术在直接应用于FBMC时不会恢复子载波之间的正交性。为了解决这个问题,我们提出了两种基于新的子带处理的MIMO FBMC方案的设计。控制第一方案和第二方案的设计的品质因数分别是信号泄漏加噪声比(SLNR)和信号干扰加噪声比(SINR)。但是,我们不仅将分析局限于新的子带处理的设计,而且还进行了复杂度的渐近分析,并解决了信道估计问题。基于仿真的结果表明,就BER而言,所解决的解决方案明显优于先前的MIMO FBMC方案。与OFDM相比,即使信道状态信息的知识不完善,所设计的技术也能够保持竞争力。在循环前缀(CP)长度不足以避免块间干扰的情况下,建议的设计能够降低BER。但是,应该付出的代价是复杂性的增加。

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