Energy Consumption Analysis of K Rank Fusion Detection Under Noise Uncertainty

Jiwu Qian, Yuebin Chen, Chutian Chen
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Abstract

In cognitive unlimited power, single-user spectrum sensing due to environmental impact and hardware factors has been difficult to meet its quasi-conformity. To solve this problem, multi-user spectrum sensing technology has been proposed. However, most of the current literature only focuses on improving the detection performance of the system, and ignores the system energy consumed by processing data in the process of cooperative sensing. Therefore, this paper analyzes the energy consumption in spectrum sensing. In the case of combining noise uncertainty, the system energy is studied based on the K rank fusion rule in the hard fusion criterion. Through experimental simulation, the energy consumed by the system is reduced as the noise uncertainty is reduced.
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噪声不确定性下K阶融合检测能耗分析
在认知无限功率下,单用户频谱感知由于环境影响和硬件因素难以满足其准一致性。为了解决这一问题,提出了多用户频谱感知技术。然而,目前的文献大多只关注提高系统的检测性能,而忽略了协同感知过程中处理数据所消耗的系统能量。因此,本文对频谱传感中的能量消耗进行了分析。在结合噪声不确定性的情况下,基于硬融合准则中的K级融合规则对系统能量进行了研究。通过实验仿真,降低了噪声的不确定性,降低了系统的能耗。
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