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A Self-Adaptive Progressive Support Selection Scheme for Collaborative Wideband Spectrum Sensing

机译:协作式宽带频谱感知的自适应渐进支持选择方案

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摘要

The sampling rate of wideband spectrum sensing for sparse signals can be reduced by sub-Nyquist sampling with a Modulated Wideband Converter (MWC). In collaborative spectrum sensing, the fusion center recovers the spectral support from observation and measurement matrices reported by a network of CRs, to improve the precision of spectrum sensing. However, the MWC has a very high hardware complexity due to its parallel structure; it sets a fixed threshold for a decision without considering the impact of noise intensity, and needs a priori information of signal sparsity order for signal support recovery. To address these shortcomings, we propose a progressive support selection based self-adaptive distributed MWC sensing scheme (PSS-SaDMWC). In the proposed scheme, the parallel hardware sensing channels are scattered on secondary users (SUs), and the PSS-SaDMWC scheme takes sparsity order estimation, noise intensity, and transmission loss into account in the fusion center. More importantly, the proposed scheme uses a support selection strategy based on a progressive operation to reduce missed detection probability under low SNR levels. Numerical simulations demonstrate that, compared with the traditional support selection schemes, our proposed scheme can achieve a higher support recovery success rate, lower sampling rate, and stronger time-varying support recovery ability without increasing hardware complexity.
机译:稀疏信号的宽带频谱感测采样率可以通过使用调制宽带转换器(MWC)进行的亚奈奎斯特采样来降低。在协作频谱感测中,融合中心从CR网络报告的观测和测量矩阵中恢复频谱支持,以提高频谱感测的精度。但是,由于MWC具有并行结构,因此具有很高的硬件复杂性。它为决策设置了固定的阈值,而没有考虑噪声强度的影响,并且需要信号稀疏度的先验信息来恢复信号支持。为了解决这些缺点,我们提出了一种基于渐进支持选择的自适应分布式MWC传感方案(PSS-SaDMWC)。在所提出的方案中,并行硬件感测信道分散在次要用户(SU)上,并且PSS-SaDMWC方案在融合中心考虑了稀疏阶估计,噪声强度和传输损耗。更重要的是,提出的方案使用基于渐进操作的支持选择策略来降低低SNR级别下的漏检概率。数值仿真表明,与传统的支持选择方案相比,该方案在不增加硬件复杂度的情况下,可以实现更高的支持恢复成功率,更低的采样率以及更强的时变支持恢复能力。

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