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Parallelized Structures for MIMO FBMC Under Strong Channel Frequency Selectivity

机译:强信道频率选择性下MIMO FBMC的并行结构

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摘要

A novel architecture for MIMO transmission and reception of filterbank multicarrier (FBMC) modulated signals under strong frequency selectivity is presented. The proposed system seeks to approximate an ideal frequency-selective precoder and linear receiver by Taylor expansion, exploiting the structure of the analysis and synthesis filterbanks. The resulting architecture is implemented by linearly combining conventional MIMO linear transceivers, which are applied to sequential derivatives of the original filterbank. The classical per-subcarrier precoding/linear receiver configuration is obtained as a special case of this architecture, when only one stage is fixed at both transmitter and receiver. An asymptotic expression for the resulting intersymbol/intercarrier (ISI/ICI) distortion is derived assuming that the number of subcarriers grows large. This expression can in practice be used in order to determine the number of parallel stages that need to be implemented in the proposed architecture. Performance evaluation studies confirm the substantial advantage of the proposed scheme in practical frequency-selective MIMO scenarios.
机译:提出了一种在强频率选择性下MIMO发送和接收滤波器组多载波(FBMC)调制信号的新型架构。拟议的系统寻求通过泰勒展开来近似理想的频率选择性预编码器和线性接收器,并利用分析和综合滤波器组的结构。通过线性组合常规MIMO线性收发器实现最终的体系结构,这些收发器应用于原始滤波器组的顺序导数。当仅在发射机和接收机上固定一个级时,可获得经典的每子载波预编码/线性接收机配置作为该体系结构的特殊情况。假设子载波的数量增加,则得出所产生的符号间/载波间(ISI / ICI)失真的渐近表达式。在实践中,可以使用此表达式来确定需要在建议的体系结构中实现的并行阶段的数量。性能评估研究证实了该方案在实际的频率选择性MIMO方案中的巨大优势。

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