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Evaluation of energy detector based spectrum sensing for OFDM based cognitive radio

机译:基于能量检测器的频谱感知对基于OFDM的认知无线电的评估

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With congested wireless spectrum and increasing number of users, cognitive radio serve as a panacea for efficient spectrum utilization. This stands to substantiate the amount of research happening in this area. Spectrum sensing is indubitably a key functionality in cognitive radio, which helps determining the spectral holes and white spaces for the secondary users to communicate. In this paper, the energy detector based spectrum sensing for OFDM based cognitive radio is studied and evaluated for various Signal and Noise conditions. The threshold which is a determining factor in energy detector is computed using a divide and conquer approach which is also a novelty of this paper. The bound for minimum width of the white space that is detectable by an energy detector in the case of real time multiple primary user scenario is well established through convincing simulations. The influence of SNR on the spectrum sensing is also presented with regard to the accuracy of sensing or probability of detection. Certain indispensable conditions for implementation of this detector are also discussed.
机译:随着无线频谱的拥挤和用户数量的增加,认知无线电成为有效利用频谱的灵丹妙药。这足以证实该领域正在发生的研究数量。频谱感测无疑是认知无线电中的关键功能,它有助于确定频谱孔和空白空间,供次要用户进行通信。在本文中,针对基于OFDM的认知无线电,研究并评估了基于能量检测器的频谱感测,以评估各种信号和噪声条件。阈值是能量检测器中的决定性因素,它是采用分治法来计算的,这也是本文的新颖之处。通过令人信服的模拟,可以很好地确定在实时多主要用户情况下,能量检测器可检测到的空白空间最小宽度的界限。还就检测的准确性或检测的概率提出了SNR对频谱检测的影响。还讨论了实现该检测器的某些必不可少的条件。

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