Geo-location assisted spectrum sensing for cognitive coexistent heterogeneous networks

Bingxuan Zhao, S. Sasaki
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引用次数: 2

Abstract

Different from the conventional networks with single secondary network, the spectrum sensing scheme for cognitive coexistent networks should not only detect the primary signal but also detect the secondary signals to avoid the interference with both the primary network and the operating coexistent secondary networks. Therefore, the sensing scheme in coexistent networks should be able to differentiate the primary signal from the secondary signals. Due to the heterogeneity of the secondary networks, the secondary signals may exploit different PHY modes (some of them may be the same as the primary PHY mode), which imposes difficulties in the coherent signal detection schemes. Aiming at overcoming such difficulties, this paper proposes a non-coherent spectrum sensing scheme with the assistance of the geo-locations of the primary and secondary nodes. In the proposed scheme, the differentiation between the primary and secondary signals is formulated into a problem of solving a non-homogeneous linear equation matrix. During the signal detection, the characteristics of both primary and secondary signals are not required. Both the analysis and the simulation results show the feasibility and efficiency of the proposed scheme.
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认知共存异构网络的地理定位辅助频谱感知
与传统的单一辅助网络不同,认知共存网络的频谱感知方案既要检测主网络信号,又要检测辅助网络信号,以避免对主网络和工作共存的辅助网络的干扰。因此,共存网络中的传感方案应该能够区分主、次信号。由于辅助网络的异构性,辅助信号可能采用不同的物理层模式(其中一些可能与主物理层模式相同),这给相干信号检测方案带来了困难。针对这一困难,本文提出了一种利用主、次节点地理位置辅助的非相干频谱感知方案。在该方案中,将主次信号的微分问题转化为求解非齐次线性方程矩阵的问题。在信号检测过程中,不需要同时检测主从信号的特性。分析和仿真结果均表明了该方案的可行性和有效性。
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