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On Using Interference-Aware Spectrum Sensing for Dynamic Spectrum Access in Cognitive Radio Networks

机译:认知无线电网络中使用干扰感知频谱感知进行动态频谱接入的研究

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Spectrum sensing is an important step toward enabling dynamic spectrum access in cognitive radio networks. To ensure that primary users are properly protected while maximizing the performance of secondary users, most related work considers the metrics of probabilities of missed detection and false alarm for determining optimal spectrum sensing parameters. In this paper, we argue that spectrum sensing based entirely on the two metrics is unable to maximize spectrum utilization for dynamic spectrum access. We show that, to meet the requirement of the probability of missed detection, conventional spectrum sensing techniques can unnecessarily increase the probability of false alarm in scenarios with good spectrum reuse opportunity, thus lowering the ability to leverage spectrum holes. To address this problem, we define the probability of interference and propose a new metric for spectrum sensing to consider both the probabilities of interference and missed detection. We first investigate the problem of optimal spectrum hole discovery for a single secondary user based on the proposed metric, and then extend to the problem of cooperative spectrum sensing among a group of secondary users. Compared against conventional sensing techniques presented in related work, we show through simulations that interference-aware spectrum sensing can potentially result in better utilization of the spectrum by allowing the secondary user to maximize its transmission opportunity without sacrificing the desired degree of protection for primary users.
机译:频谱感测是实现认知无线电网络中动态频谱访问的重要一步。为了确保主要用户得到适当的保护,同时最大程度地提高次要用户的性能,大多数相关工作考虑了漏检和误报的概率的度量标准,以确定最佳的频谱感知参数。在本文中,我们认为完全基于这两个指标的频谱感测无法最大化动态频谱访问的频谱利用率。我们表明,为了满足漏检概率的要求,常规频谱感测技术可以在具有良好频谱重用机会的场景中不必要地增加虚警的概率,从而降低了利用频谱漏洞的能力。为了解决这个问题,我们定义了干扰的可能性,并提出了一种新的频谱感知度量,同时考虑了干扰的概率和漏检。我们首先根据提出的指标调查单个次要用户的最佳频谱漏洞发现问题,然后扩展到一组次要用户之间的协作频谱感知问题。与相关工作中介绍的常规传感技术相比,我们通过仿真显示,通过允许次要用户最大化其传输机会而又不牺牲对主要用户的期望的保护程度,可感知干扰的频谱感知可以潜在地更好地利用频谱。

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