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Gradient-Based Real-Time Spectrum Sensing at Low SNR

机译:低SNR的基于梯度的实时频谱感应

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摘要

One of the main steps of enabling dynamic spectrum allocation for cognitive radios is spectrum sensing. Two critical problems in sensing a wide bandwidth are variations in noise power and degraded performance at a low SNR. The common FCME approach may lead to missed detection in sensing a wideband. The improved gradient-based energy detection method proposed here satisfactorily addresses the problem of choosing an appropriate threshold in such a scenario. The sensing bandwidth is divided into smaller subbands, and the gradient of the mean of subbands (GMSB) is computed and summed over past data samples in each subband. Applying a histogram-based threshold on the GMSB enables the accurate distinction of signal and noise without perfect knowledge of the noise floor. The theory of the proposed algorithm has been validated with numerical simulations over a wide range of low SNR values at different signal bandwidths. The detection performance of the approach is more effective than the FCME. The technique is tested over real-time wideband sensing in the GSM and CDMA bands.
机译:为认知无线电实现动态频谱分配的主要步骤之一是频谱感测。感测宽带宽时的两个关键问题是噪声功率变化和低SNR时性能下降。普通的FCME方法可能会导致在感测宽带时错过检测。这里提出的改进的基于梯度的能量检测方法令人满意地解决了在这种情况下选择合适的阈值的问题。感测带宽被划分为较小的子带,并且计算子带均值(GMSB)的斜率,并对每个子带中的过去数据样本求和。在GMSB上应用基于直方图的阈值可以准确区分信号和噪声,而无需完全了解本底噪声。所提出算法的理论已通过数值模拟在不同信号带宽下的低信噪比范围内进行了验证。该方法的检测性能比FCME更有效。该技术已通过GSM和CDMA频段的实时宽带传感测试。

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