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Pre-processing based soft-demapper for per-tone MIMO operation in QAM-FBMC systems

机译:基于预处理的软解映射器,用于QAM-FBMC系统中的单音MIMO操作

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As a promising candidate to replace cyclic prefixed orthogonal frequency division multiplexing (CP-OFDM), a new quadrature amplitude modulation filter-bank multi-carrier (QAM-FBMC) has been proposed for enabling spectral efficiency increase and spectrum confinement while keeping near orthogonality. QAM transmission can combat intrinsic interference of conventional offset-QAM (OQAM)-FBMC, which is main bottleneck in channel estimator and multiple antenna transceiver design. Compared to existing single filter based QAM-FBMC, the new QAM-FBMC has more optimization freedom in multiple prototype filters to increase self signal-to-interference ratio (SIR). In this paper, the possibility of per-tone multiple input multiple output (MIMO) reception in the new QAM-FBMC system is exploited. Our MIMO receiver is constructed with per-tone MIMO equalization in oversampled signal domain and its soft-demapper in symbol domain. Not only the separate log likelihood ratio (LLR) calculation per stream but also joint LLR calculation (i.e., soft maximum likelihood (ML) detection) is implemented with pre-processing. Simulation results show that the per-tone MIMO reception in QAM-FBMC is comparable to that of CP-OFDM.
机译:作为替代循环前缀正交频分复用(CP-OFDM)的有前途的候选者,已经提出了一种新的正交幅度调制滤波器组多载波(QAM-FBMC),用于在保持接近正交性的同时提高频谱效率和频谱约束。 QAM传输可以抵抗传统的偏移QAM(OQAM)-FBMC的固有干扰,这是信道估计器和多天线收发器设计的主要瓶颈。与现有的基于单个滤波器的QAM-FBMC相比,新型QAM-FBMC在多个原型滤波器中具有更大的优化自由度,以提高自信号干扰比(SIR)。在本文中,利用了新的QAM-FBMC系统中单音多输入多输出(MIMO)接收的可能性。我们的MIMO接收机采用过采样信号域中的单音MIMO均衡,符号域中的软解映射器构成。不仅可以通过预处理实现每个流的单独对数似然比(LLR)计算,而且可以实现联合LLR计算(即,软最大似然(ML)检测)。仿真结果表明,QAM-FBMC的每音MIMO接收与CP-OFDM相当。

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