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A Novel Full-Duplex Spectrum Sensing Algorithm for OFDM Signals in Cognitive Radio Networks

机译:一种新型的OFDM信号在认知无线电网络中的新型全双工谱检测算法

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Full duplex (FD) capability enables a "listen and talk" protocol for spectrum sensing that has been used as a new paradigm to increase the spectrum utilization in cognitive radio networks (CRNs). However, the spectrum sensing performance suffers from the imperfect self-interference suppression (SIS). This could significantly degrade the performance of FD systems in CRNs. In this paper, we investigate the issue of spectrum sensing with imperfect SIS in FD systems. By drawing support from a cyclic prefix (CP) of Orthogonal Frequency Division Modulation (OFDM) signals, we propose a novel spectrum sensing mechanism that is robust to self- interference. Comparing with other conventional sensing approaches in FD systems, the proposed method is independent of timing delay. That significantly improves the sensing performance, even without requiring a complex process for timing delay estimation. As a result, it also reduces the overhead of spectrum sensing. Extensive simulation results indicate that even with serious self-interference and timing delay, the presented approach is still able to achieve much higher performance than the conventional energy detection and waveform-based detection approaches.
机译:全双工(FD)能力使得“侦听和谈话”协议用于频谱感测,已被用作新的范例,以提高认知无线电网络(CRNS)中的频谱利用率。然而,频谱感测性能遭受不完全自干扰抑制(SIS)。这可以显着降低CRNS中FD系统的性能。在本文中,我们调查了FD系统中不完美SIS的频谱感应问题。通过绘制来自正交频分调制(OFDM)信号的循环前缀(CP)的支持,我们提出了一种新颖的频谱感测机制,其具有鲁棒性的自干扰。与FD系统中的其他传统传感方法相比,所提出的方法与定时延迟无关。这显着提高了感测性能,即使在不需要复杂的定时延迟估计的过程中也是如此。结果,它还减少了光谱感测的开销。广泛的仿真结果表明,即使具有严重的自干扰和定时延迟,所提出的方法仍然能够实现比传统的能量检测和基于波形的检测方法更高的性能。

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