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Blind frequency offset estimation and intercarrier interference cancelation for FD-MC-CDMA systems in aerial vehicle communication

机译:飞行器通信中FD-MC-CDMA系统的盲频偏估计和载波间干扰消除

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FD-MC-CDMA is an attractive candidate for next generation high speed aerial vehicle communication for its high spectrum efficiency and excellent BER performance. Similar to other multi-carrier transmission technologies, FD-MC-CDMA suffers significant performance degradation resulting from intercarrier interference (ICI) in high mobility environments. Particularly, because of the ICI is observed from all other subcarriers, the benefit of decomposing subcarriers into non-contiguous sets diminishes. In this paper, we propose a parallel processing based blind frequency offset estimation and ICI cancelation method for FD-MC-CDMA system to significantly improve the BER performance in high mobility environment. Specifically, by exploiting frequency offset quantization, the proposed scheme takes advantage of the orthogonality of the ICI matrix and offers excellent ICI cancelation and significant BER improvement. Moreover, the proposed scheme does not lower the transmission rate or reduce the network capacity. It is important to note that the proposed ICI cancelation scheme maintains the low complexity of optimum multi-user detection (MUD) receiver and achieves the ICI cancelation and excellent BER performance at linearly growing cost. Simulation results in AWGN channel and multi-path fading channel confirm the performance of the proposed scheme in the presence of frequency offset and in mobile channel.
机译:FD-MC-CDMA以其高频谱效率和出色的BER性能而成为下一代高速航空器通信的有吸引力的候选者。与其他多载波传输技术类似,FD-MC-CDMA在高移动性环境中会因载波间干扰(ICI)而导致性能显着下降。特别地,由于从所有其他子载波观察到了ICI,因此将子载波分解成非连续集合的益处减小了。本文针对FD-MC-CDMA系统提出了一种基于并行处理的盲频偏估计和ICI抵消方法,以显着提高高移动性环境下的BER性能。具体而言,通过利用频率偏移量化,所提出的方案利用了ICI矩阵的正交性,并提供了出色的ICI消除和显着的BER改善。而且,所提出的方案不会降低传输速率或减小网络容量。重要的是要注意,提出的ICI抵消方案保持了最佳多用户检测(MUD)接收机的低复杂性,并以线性增长的成本实现了ICI抵消和出色的BER性能。 AWGN信道和多径衰落信道中的仿真结果证实了该方案在存在频率偏移和移动信道中的性能。

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