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New multiple-input multiple-output-based filter bank multicarrier structure for cognitive radio networks

机译:用于认知无线电网络的新的基于多输入多输出的滤波器组多载波结构

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摘要

Cognitive radio (CR) has been proposed for spectral efficiency improvement while avoiding interference with licensed users. The offset quadrature amplitude modulation-based filter bank multicarrier (OQAM-FBMC) modulation is a promising candidate for CR-based systems. Although it behaves better in many aspects than orthogonal frequency division multiplexing (OFDM), the application of some techniques with FBMC becomes more challenging due to the imaginary interference, as in the case of multiple-input multiple-output (MIMO) technique. Here, the authors first propose a new MIMO-based FBMC transceiver structure for CR systems. The proposed structure is based on QAM transmission to handle the interference presented in conventional OQAM-FBMC systems. The authors also introduce two different methods to satisfy the orthogonality conditions and cancel the residual interference in QAM-FBMC systems. Both methods are based on discrete cosine transform (DCT) to achieve superior spectrum confinement and hence better spectral efficiency. Moreover, the authors present a resource allocation algorithm for the proposed structure. Simulation results demonstrate that the proposed structure outperforms the conventional FBMC-based MIMO techniques in terms of bit error rate (BER) and computational complexity. The results also show that the spectral efficiency of the proposed structure could be further improved by applying the proposed resource allocation algorithm.
机译:已经提出了认知无线电(CR)来提高频谱效率,同时避免干扰许可用户。基于偏移正交幅度调制的滤波器组多载波(OQAM-FBMC)调制是基于CR的系统的有希望的候选者。尽管它在许多方面的性能都比正交频分复用(OFDM)更好,但由于存在虚干扰,与多输入多输出(MIMO)技术一样,使用FBMC的某些技术也变得更具挑战性。在这里,作者首先提出了一种用于CR系统的新的基于MIMO的FBMC收发器结构。所提出的结构基于QAM传输来处理传统OQAM-FBMC系统中出现的干扰。作者还介绍了两种不同的方法来满足正交性条件并消除QAM-FBMC系统中的残留干扰。两种方法均基于离散余弦变换(DCT),以实现出色的频谱限制,从而实现更好的频谱效率。此外,作者提出了一种针对所提出结构的资源分配算法。仿真结果表明,所提出的结构在误码率(BER)和计算复杂度方面优于传统的基于FBMC的MIMO技术。结果还表明,通过应用所提出的资源分配算法,可以进一步提高所提出结构的频谱效率。

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