Propagation based spectrum sensing: A novel beamforming detection method

Jonathan S. Lu, I. Lu
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引用次数: 2

Abstract

This paper proposes a novel propagation based spectrum sensing method that utilizes beamforming for systems equipped with antenna arrays. Since rays are known to arrive in clusters, the arrival angles of the dominant ray clusters can be exploited to improve the spectral sensing performances. Moreover, from site-specific propagation characteristics, the dominant ray angles can be predicted without additional computational efforts in most practical environments. Numerical results based on ray-based channel models show that the proposed beamforming detection method (with or without dominant ray angle prediction) is superior to the conventional energy detection method. Numerical results also show that decreasing the angle spread, enhances the performance of the proposed method. The computational complexity and latency of the proposed method is the same as the conventional energy detection method when using dominant ray angle prediction, but increases slightly without prediction.
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基于传播的频谱传感:一种新的波束形成检测方法
本文提出了一种新的基于传播的频谱感知方法,该方法利用波束形成技术对天线阵列系统进行检测。由于已知射线以簇的形式到达,因此可以利用优势射线簇的到达角度来提高光谱传感性能。此外,根据特定位置的传播特性,在大多数实际环境中无需额外的计算就可以预测主射线角。基于射线通道模型的数值计算结果表明,所提出的波束形成检测方法(有或没有主射线角预测)优于传统的能量检测方法。数值结果还表明,减小角扩展可以提高算法的性能。采用优势射线角预测时,该方法的计算复杂度和延迟与传统能量检测方法相同,但不进行预测时,计算复杂度和延迟略有增加。
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