认知无线电系统中主动感知信号结构的设计

Han-Wei Chen, Chin-Liang Wang
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引用次数: 2

摘要

频谱感知是认知无线电系统的重要组成部分之一。周期频谱感知帧结构通过在信号帧之间引入感知静默期来保护主用户不受干扰,从而提供可靠的感知敏捷性。但是,在CR信令上设置过多的帧内感知静默期可能会降低CR网络的服务质量(QoS)。为了解决这一问题,提出了主动感知技术,即同时进行频谱感知和数据传输,以取代帧内感知。主动传感的一个缺点是由于CR网络传输的干扰,传感性能受到限制。本文提出了一种基于循环平稳特性的主动感知CR信号结构,可以在保持CR系统QoS的同时进一步提高主动感知性能。仿真结果表明,该方法显著提高了主动传感的检测性能,特别是当来自pu的信号强度足够低时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a New Signal Structure for Active Sensing in Cognitive Radio Systems
Spectrum sensing is one of the major elements of cognitive radio (CR) systems. The periodic spectrum sensing frame structure can provide reliable sensing agility by introducing sensing quiet periods among signal frames to protect the primary users (PUs) from interference. However, arranging too many intra-frame sensing quiet periods on CR signaling may degrade the quality of service (QoS) of the CR network. To solve this problem, active sensing, performing spectrum sensing and transmitting data simultaneously, has been proposed to replace the intra-frame sensing. One drawback of active sensing is that the sensing performance becomes limited due to the interference from CR network transmissions. In this paper, a new CR signal structure for active sensing based on the cyclostationary properties is proposed, with which the active sensing performance can be further improved while maintaining the QoS of the CR system. Simulation results show that the proposed method significantly improves the detection performance of active sensing, especially when the signal strength from PUs is sufficiently low.
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