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An Efficient Optimized Handover in Cognitive Radio Networks using Cooperative Spectrum Sensing

机译:使用协作频谱感应的认知无线电网络中的高效优化切换

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Cognitive radio systems necessitate the incorporation of cooperative spectrum sensing among cognitive users to increase the reliability of detection. We have found that cooperative spectrum sensing is not only advantageous, but is also essential to avoid interference with any primary users. Interference by licensed users becomes a chief concern and issue, which affects primary as well as secondary users leading to restrictions in spectrum sensing in cognitive radios. When the number of cognitive users increases, the overheads of the systems, which are meant to report the sensing results to the common receiver, which becomes massive. When the spectrum, which is in use becomes unavailable or when the licensed user takes the allocated band, these networks have the capability of changing their operating frequencies. In addition, cognitive radio networks are seen to have the unique capability of sensing the spectrum range and detecting any spectrum, which has been left underutilized. Further this capability of recognizing the spectrum range based on the dimensions detected, allows for determination of the band, which may be utilized. The main objective of this paper is to analyze the cognitive radio's spectrum sensing ability and evolving a self-configured system with dynamic intelligence networks without causing any interference to the primary user. The paper also brings focus to the quantitative analysis of the two spectrum sensing techniques namely; Energy Detection and Band Limited White Noise Detection. The estimation technique for detecting spectrum noise is based on the detection of probability and probability of false alarms at different Signal-to-Noise Ratio (SNR) levels using Additive White Gaussian Noise signal (AWGN). The efficiency of the proposed Cooperative CUSUM spectrum sensing algorithm performs better than existing optimal rules based on a single observation spectrum sensing techniques under cooperative networks.
机译:认知无线电系统需要在认知用户之间合并协作频谱感测,以提高检测的可靠性。我们已经发现,协作频谱感测不仅是有利的,而且对于避免干扰任何主要用户也是必不可少的。许可用户的干扰已成为主要关注和问题,它会影响主要用户和次要用户,从而导致认知无线电频谱感测受到限制。当认知用户的数量增加时,系统的开销(用于将感测结果报告给公共接收器)将变得非常庞大。当正在使用的频谱不可用时,或者当许可用户使用分配的频段时,这些网络都可以更改其工作频率。另外,认知无线电网络被认为具有感测频谱范围和检测任何频谱的独特能力,而这种能力尚未得到充分利用。此外,基于检测到的尺寸来识别频谱范围的这种能力允许确定可以利用的频带。本文的主要目的是分析认知无线电的频谱感知能力,并发展具有动态智能网络的自配置系统,而不会对主要用户造成任何干扰。本文还着重于对两种频谱传感技术的定量分析:能量检测和频带受限白噪声检测。用于检测频谱噪声的估计技术基于使用加性高斯白噪声信号(AWGN)在不同信噪比(SNR)级别下检测虚假警报的概率和概率。所提出的协作式CUSUM频谱感知算法的效率比现有的基于规则的单一观测频谱感知技术的最优规则要好。

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