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An improved multicarrier based waveform design for cognitive radio communication

机译:一种改进的基于多载波的认知无线电通信波形设计

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Compared to the CP-OFDM, filter bank based multi-carrier with offset quadrature amplitude modulation (FBMC/OQAM) is more suitable for cognitive radio scenarios by using synthesis and analysis filter banks with well time-frequency location(TFL) property. Being a favorable candidate physical waveform for the cognitive radio system, FBMC/OQAM has attracted much attention. However, real orthogonality instead of complex orthogonality makes the combination of MIMO and FBMC/OQAM system challenging. In this paper, the implemention issues of the FBMC/OQAM system is researched. Considering various prototype filters used, a weighted signal-to-leakage-and-noise ratio (WSLNR) based precoding method is proposed to mitigate intrinsic interference, the simulation results show that the proposed method is more robust to the channel frequency selectivity compared to the others. The spectral comparison for the prototype filters of the FBMC/OQAM and the CP-OFDM recommends the consideration of FBMC/OQAM in the future CR systems.
机译:与CP-OFDM相比,基于滤波器组的具有偏移正交幅度调制的多载波(FBMC / OQAM)通过使用具有良好时频定位(TFL)属性的合成和分析滤波器组,更适合于认知无线电场景。作为认知无线电系统的理想候选物理波形,FBMC / OQAM引起了很多关注。然而,真正的正交性而不是复杂的正交性使得MIMO和FBMC / OQAM系统的组合具有挑战性。本文研究了FBMC / OQAM系统的实现问题。考虑到使用的各种原型滤波器,提出了一种基于加权信噪比(WSLNR)的预编码方法来减轻固有干扰,仿真结果表明,该方法对信道频率选择性的鲁棒性更高。其他。 FBMC / OQAM和CP-OFDM的原型滤波器的频谱比较建议在未来的CR系统中考虑FBMC / OQAM。

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