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首页> 外文期刊>IEEE Transactions on Signal Processing >An Asymptotic Approach to Parallel Equalization of Filter Bank Based Multicarrier Signals
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An Asymptotic Approach to Parallel Equalization of Filter Bank Based Multicarrier Signals

机译:基于滤波器组的多载波信号并行均衡的渐近方法

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摘要

A novel equalization structure for filter bank based multicarrier (FBMC) based modulations is proposed in this paper. The equalizer architecture is derived by assuming that the number of carriers is asymptotically large, and it consists of multiple parallel stages that are linearly combined on a per-subcarrier basis. The traditional single-tap per-subcarrier equalizer is obtained as a special case of the proposed architecture when the number of stages is fixed to one. An analytical characterization of the output signal to noise plus distortion ratio is provided, which can be used in practice to fix the number of parallel stages of the equalizer in order to obtain a certain performance level at the minimum complexity. Both simulations and analytical predictions indicate that high performance gains can be obtained with respect to more conventional FBMC equalization approaches. Furthermore, the proposed architecture is also shown to present important advantages in terms of computational complexity when compared with classical FBMC equalization architectures.
机译:提出了一种新颖的基于滤波器组的基于多载波(FBMC)的调制均衡结构。均衡器架构是通过假设载波数量渐近而得出的,它由多个并行级组成,这些级在每个子载波的基础上线性组合。当级数固定为1时,将获得传统的单抽头每子载波均衡器,作为所提出架构的特殊情况。提供了输出信号噪声与失真比的分析特性,可在实践中用于固定均衡器的并行级数,以便以最小的复杂度获得一定的性能水平。仿真和分析预测均表明,相对于更传统的FBMC均衡方法,可以获得高性能。此外,与经典FBMC均衡架构相比,该架构在计算复杂度方面也显示出重要的优势。

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