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A Performance Comparison of four Moderns Spectrum Sensing techniques under Noise Uncertainty and different User Accessing Time

机译:噪声不确定和用户接入时间不同时四种现代频谱感知技术的性能比较

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Uncertainty of Noise is a strong negative effect on a communication channel, in which, the performance of spectrum sensing will drop. In this paper, we investigate the performance of several modern spectrum sensing techniques in Cognitive Radio system which are proposed to address the issue of the uncertainty of noise. We consider for spectrum sensing techniques including Energy Detection Technique, Maximum Eigenvalue Detection Technique, Split-Half Spectrum Sensing Technique and Micro-slotted Dual-stage Spectrum Sensing Technique. We simulate the communication channel as stated in IEEE 802.22 Standard under uncertainty of noise at 0, 1 and 2 dB. Moreover, the effect of an active time of the primary user, which affects on the spectrum sensing performance, is taken into the account. Then, the performance of these techniques are evaluated by using three parameters; probability of detection, probability of false alarm and sensing time.
机译:噪声的不确定性是对通信信道的强烈负面影响,其中频谱感测的性能将下降。在本文中,我们研究了认知无线电系统中几种旨在解决噪声不确定性问题的现代频谱感测技术的性能。我们考虑频谱检测技术,包括能量检测技术,最大特征值检测技术,分半频谱检测技术和微时隙双阶段频谱检测技术。我们在0、1和2 dB的噪声不确定性下模拟IEEE 802.22标准中规定的通信信道。此外,考虑了主要用户的活动时间对频谱感测性能的影响。然后,通过使用三个参数评估这些技术的性能。检测概率,错误警报的概率和检测时间。

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