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Novel approach for blind spectrum sensing in time and frequency domain

机译:时域和频域中盲频谱感测的新方法

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Cognitive radio is a new concept of reusing licensed spectrum in an unlicensed manner. The spectrum must be sensed to detect primary user signals, in order to allow cognitive radios in a primary system. Spectrum sensing is to be done over a wide range of the electro-magnetic spectrum. While many of the signals of interest are similar in terms of the modulation techniques used, the characteristics of the transmission channel experienced by these signals can vary considerably depending upon the frequency range of operation. In the recent scenario 802.16 (commercially known as WIMAX) uses scalable OFDMA as physical layer transmission technique. This paper explores the issues in coexistence between cognitive systems and WiMax. Performance evaluation is done for time domain and frequency domain spectrum sensing techniques using time varying channel conditions.
机译:认知无线电是一种以无执照方式重用许可频谱的新概念。为了在主要系统中允许认知无线电,必须感测频谱以检测主要用户信号。频谱感测应在很宽的电磁频谱范围内进行。尽管许多感兴趣的信号在使用的调制技术方面相似,但是这些信号所经历的传输通道的特性可能会根据工作频率范围而有很大不同。在最近的场景中,802.16(商业上称为WIMAX)使用可伸缩的OFDMA作为物理层传输技术。本文探讨了认知系统和WiMax之间共存的问题。使用时变信道条件对时域和频域频谱感测技术进行了性能评估。

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