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Cyclic prefix-based universal filtered multicarrier system and performance analysis

机译:基于循环前缀的通用滤波多载波系统和性能分析

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摘要

Recently proposed universal filtered multicarrier (UFMC) system is not an orthogonal system in multipath channel environments and might cause significant performance loss. In this paper, the authors propose a cyclic prefix (CP) based UFMC system and first analyze the conditions for interference-free one-tap equalization in the absence of transceiver imperfections. Then the corresponding signal model and output signal-to-noise ratio expression are derived. In the presence of carrier frequency offset, timing offset, and insufficient CP length, the authors establish an analytical system model as a summation of desired signal, intersymbol interference, intercarrier interference, and noise. New channel equalization algorithms are proposed based on the derived analytical signal model. Numerical results show that the derived model matches the simulation results precisely, and the proposed equalization algorithms improve the UFMC system performance in terms of bit error rate.
机译:最近提出的通用滤波多载波(UFMC)系统在多径信道环境中不是正交系统,可能会导致严重的性能损失。在本文中,作者提出了一种基于循环前缀(CP)的UFMC系统,并首先分析了在没有收发器缺陷的情况下实现无干扰单抽头均衡的条件。然后导出相应的信号模型和输出信噪比表达式。在存在载波频率偏移,时序偏移和CP长度不足的情况下,作者建立了一个分析系统模型,作为所需信号,符号间干扰,载波间干扰和噪声的总和。基于导出的解析信号模型,提出了新的信道均衡算法。数值结果表明,所推导的模型与仿真结果完全吻合,所提出的均衡算法在误码率方面提高了UFMC系统的性能。

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