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A Measurement Algorithm for Frequency Agility in Cognitive Radio

机译:认知无线电频率敏捷性测量算法

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Nowadays, radio systems have to use the spectrum resource more intensely than in the past to meet the demanding expectations of the users. Several studies have demonstrated that portions of radio spectrum are not in use for significant periods of time, showing the necessity to design a more flexible way to manage the spectrum resource with respect to the traditional frequency allocation policy. Cognitive radios systems have been conceived to enable such flexible spectrum allocation, making more intensive and efficient spectrum use. This capability is usually called frequency agility. In literature, several spectrum sensing methods have been proposed, which promise good performance even when applied to detect very weak signals. Nevertheless, even though they meet the spectrum sensing capability requirements, they do not seem to satisfy the frequency agility capability requisites. In this framework, the paper proposes a novel measurement algorithm able to meet those requirements. Major strength of the proposal is the ability to correctly operate even in scenarios characterized by very low signal-to-noise ratios. The assessment campaign has shown the efficacy and usefulness of the proposed algorithm.
机译:如今,无线电系统必须比过去更强烈地使用频谱资源,以满足用户的苛刻期望。几项研究表明,在大量的时间段内,不使用的无线电频谱部分,显示了设计更灵活的方式来管理传统频率分配策略的频谱资源的必要性。已经构思了认知无线电系统,以实现这种灵活的频谱分配,制作更密集和有效的频谱使用。此功能通常称为频率敏捷性。在文献中,已经提出了几种频谱感测方法,即使在应用以检测​​到非常弱的信号时,也承诺良好的性能。尽管如此,即使它们符合频谱传感能力要求,它们似乎并不满足频率敏捷能力所需的要求。在本框架中,本文提出了一种能够满足这些要求的新型测量算法。提案的主要优势是即使在具有非常低信噪比的情况下也能够正确操作的能力。评估活动表明了所提出的算法的功效和有用性。

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