基于自适应阈值的认知无线电协同频谱感知

Manisha Gupta, G. Verma, R. Dubey
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引用次数: 26

摘要

认知无线电(CR)已成为解决频谱短缺问题的一种有希望的解决方案,所有现有的和新提出的无线业务都面临着频谱短缺问题。在认知无线电网络(CRN)中,频谱感知扮演着最重要的角色,被认为是认知无线电网络(CRN)的重要组成部分,在文献中提出的频谱感知方案中,能量检测(ED)因其复杂度低而被普遍采用。但在信噪比较低的区域,ED方案的性能会下降。为了提高ED方案在低信噪比区域的感知性能,本文考虑了自适应阈值。该自适应阈值是固定(常规)阈值和接收到CR的主用户(PU)信号信噪比的函数,但由于无线通信信道的阴影、多径衰落和隐藏终端问题,单个CR节点可能无法给出有效的感知结果。因此,为了解决这些问题,我们进一步落实合作中提出的办法。在协同频谱感知(CSS)方案中,每个CR将使用自适应阈值单独感知频谱,然后将其决策传递给中心节点,也称为融合中心(FC)。将FC接收到的所有二进制决策融合在一起,然后由FC对频谱的可用性做出最终决策。仿真结果表明,合作条件下的自适应阈值优于非合作条件下的自适应阈值。
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Cooperative Spectrum Sensing for Cognitive Radio Based on Adaptive Threshold
Cognitive radio (CR) has emerged as a promising solution to the spectrum scarcity problem, faced by all existing as well as newly proposed wireless services. In cognitive radio network (CRN) spectrum sensing plays the most important role and is considered as an integral part of CR. Among all the spectrum sensing schemes proposed in literature energy detection (ED) is commonly adopted due to its low complexity. But for low signal to noise ratio (SNR) region the performance of ED scheme deteriorates. To enhance the sensing performance of ED scheme for low SNR region, an adaptive threshold is considered in this paper. This adaptive threshold is a function of fixed (conventional) threshold and SNR of primary user (PU) signal received at CR. However the individual CR node may not give valid sensing results due to shadowing, multipath fading and hidden terminal problems of wireless communication channel. Therefore to deal with these problems we further implement the proposed approach under cooperation. In cooperative spectrum sensing (CSS) scheme, each CR will individually sense the spectrum using adaptive threshold and then transfer its decision to a central node also known as fusion center (FC). All the binary decisions received at FC are fused together and then final decision about the availability of spectrum is taken by FC. The simulation results show the better performance of adaptive threshold under cooperation than non-cooperation.
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