基于动态阈值自适应的协同频谱感知

Dae-Young Seol, H. Lim, G. Im
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引用次数: 10

摘要

频谱感知是认知无线电的关键使能技术。可靠的检测增加了暂时未使用频段的访问机会,并防止了对许可用户的有害干扰。然而,由于接收机噪声、信号衰减和多径衰落的影响,通常无法绝对确定主信号的存在。协同感知通过从共享的局部感知结果中提取全局决策,实现了在衰落信道下的高可靠性。在本文中,我们假设主系统的流量统计数据被记录到无线电环境图(REM)中,并且可以被辅助系统访问。每个能量检测器的阈值根据REM的效用值和先验信息进行动态调整,然后由融合中心收集决策结果和相应的操作点,进行高置信度的全局决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooperative Spectrum Sensing with Dynamic Threshold Adaptation
Spectrum sensing is a key enabling technology of cognitive radio. Reliable detection increases access opportunity to temporarily unused bands and prevents harmful interference to the licensed users. Due to the receiver noise, signal attenuation, and multi-path fading effect, however, it is usually not possible to determine the existence of primary signal with absolute certainty. By extracting a global decision from shared local sensing results, cooperative sensing achieves high reliability over fading channels. In this paper, we assume that the traffic statistic of primary system is logged into the radio environment map (REM) and can be accessed by the secondary systems. The threshold of each energy detector is dynamically adapted according to the utility values and a priori information from REM. Then, decision results and corresponding operating points are collected by a fusion center, which makes a global decision with high confidence.
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