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An Enhanced QAM-FBMC Scheme With Interference Mitigation

机译:具有干扰缓解功能的增强型QAM-FBMC方案

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Cyclic prefixed orthogonal frequency division multiplexing (CP-OFDM) has been used as a waveform for mobile communications, but CP-OFDM has weaknesses in an asynchronous heterogeneous network scenario. To overcome the disadvantage of CP-OFDM, a quadrature amplitude modulation (QAM)-filter-bank-based multi-carrier (FBMC) system is proposed to achieve superior spectrum confinement and better spectral efficiency. However, QAM-FBMC has inevitable performance degradation because of interferences from non-orthogonal filters. In this letter, we propose a decision feedback equalization (DFE)-based interference mitigation scheme for the QAM-FBMC system to cancel a residual interference. The interference from the filters of QAM-FBMC influences to other subcarriers and symbols, and it is modeled as an end-to-end system transfer function with para-Hermitian poly-nomial matrix form, equivalently. By spectral factorization of the system transfer function, the system response is transformed into causal, and the receiver detects the symbols successively. This letter describes the spectral factorization method and formulates the feed-forward and feedback filter of the DFE structure with the spectral factor of transfer function. Simulation results show the superiority of the proposed scheme to the conventional QAM-FBMC receiver scheme.
机译:循环前缀正交频分复用(CP-OFDM)已被用作移动通信的波形,但是CP-OFDM在异步异构网络方案中具有弱点。为了克服CP-OFDM的缺点,提出了一种基于正交幅度调制(QAM)-滤波器组的多载波(FBMC)系统,以实现更好的频谱限制和更好的频谱效率。然而,由于来自非正交滤波器的干扰,QAM-FBMC不可避免地会降低性能。在这封信中,我们为QAM-FBMC系统提出了一种基于决策反馈均衡(DFE)的干扰缓解方案,以消除残留干扰。来自QAM-FBMC滤波器的干扰会影响其他子载波和符号,并且等效地将其建模为具有准Hermitian多项式矩阵形式的端到端系统传递函数。通过系统传递函数的频谱分解,系统响应被转换为因果关系,并且接收器连续检测符号。这封信描述了频谱分解方法,并用传递函数的频谱因子来公式化DFE结构的前馈和反馈滤波器。仿真结果表明,该方案优于传统的QAM-FBMC接收机方案。

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