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Performance analysis of spectrum sensing detection techniques for overlay users

机译:覆盖用户频谱感知检测技术的性能分析

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In the developing world, the usage of mobile phones and other data communication devices are unavoidable which results in congestion of spectrum. Cognitive Radio is a technology which helps us to use spectrum efficiently. Cognitive Radio offers a solution by utilizing the spectrum holes that represent the potential opportunities for non-interfering use of spectrum which requires three main tasks - Spectrum Sensing, Spectrum Analysis and Spectrum Decision Making. Spectrum Sensing means ability to measure, sense and be aware of the parameters related to radio channel characteristics, availability of the spectrum and transmit power, interference and noise, radio's operating environment, user requirements and applications. The Overlay Cognitive Radio model makes it possible to have two concurrent transmissions in a given interference region, where conventionally only one communication can take place at a given time. In this paper, spectrum sensing methods namely Computationally Efficient Energy Detection, Logical Selection and Wideband Spectrum Sensing using Sub-Nyquist Sampling are discussed.
机译:在发展中国家,不可避免地使用移动电话和其他数据通信设备,这会导致频谱拥塞。认知无线电是一项可以帮助我们有效使用频谱的技术。认知无线电利用频谱空洞提供了一种解决方案,这些空洞代表着不干扰频谱使用的潜在机会,这需要三个主要任务-频谱感知,频谱分析和频谱决策。频谱感测是指能够测量,感测和了解与无线电信道特性,频谱可用性和发射功率,干扰和噪声,无线电的工作环境,用户要求和应用有关的参数。叠加认知无线电模型使得在给定的干扰区域内同时进行两次传输成为可能,在该区域中,通常在给定的时间只能进行一次通信。在本文中,讨论了频谱感测方法,即计算高效能量检测,逻辑选择和使用次奈奎斯特采样的宽带频谱感测。

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