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Bhattacharyya distance criterion based multibit quantizer design for cooperative spectrum sensing in cognitive radio networks

机译:基于BHATTACHARYYA距离标准的认知无线电网络合作频谱传感的多BIS量化器设计

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摘要

Cooperative spectrum sensing (CSS) is crucial for dynamic spectrum access in cognitive radio networks. This paper considers a CSS scheme by using a multilevel quantizer in each sensing node (SN) to quantize the local energy detector's observation. A log-likelihood ratio test detector by using quantized data received from each SN is proposed to determine the presence or absence of the primary user signal. The Bhattacharyya distance (BD) of the cooperative sensing system is derived. Then, a quantizer design scheme by maximizing the BD that as the criterion function in an optimization problem with respect to the quantization thresholds is proposed. As nonlinear and high-dimensional of the objective function, a particle swarm optimization algorithm is employed to solve operating parameters for the quantizer. Furthermore, we derive the upper bound performance on cooperative energy detection (CED) in CSS. To validate the effectiveness of the proposed approach, The quantizer is compared with other schemes in terms of detection performance. Simulation results show that 2- or 3-bit quantization of the proposed approach achieves comparable performance to upper bound of CED without quantization.
机译:协作频谱感测(CSS)对于认知无线电网络中的动态频谱访问至关重要。本文通过在每个传感节点(SN)中使用多级量化器来计算CSS方案来量化局部能量检测器的观察。提出了通过使用从每个SN接收的量化数据的对数似然比测试检测器来确定主要用户信号的存在或不存在。衍生协同传感系统的Bhattacharyya距离(BD)。然后,提出了一种量化器设计方案,通过最大化作为定量化阈值的优化问题中的标准函数的BD来实现的量化器设计方案。作为目标函数的非线性和高维度,采用粒子群优化算法来解决量化器的操作参数。此外,我们在CSS中获得了对协作能量检测(CED)的上限性性能。为了验证所提出的方法的有效性,在检测性能方面将量化器与其他方案进行比较。仿真结果表明,所提出的方法的2个或3位量化达到了CED的上限而无需量化。

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