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Spectrum Sensing in Wideband OFDM Cognitive Radios

机译:宽带OFDM认知无线电中的频谱感知

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In this paper, spectrum sensing of an orthogonal frequency division multiplexing (OFDM) based cognitive radio (CR) is addressed. The goal is to identify the portions of the spectrum that are unused by primary user systems and other CR systems, called existing user (EU) systems altogether, with the emphasis on conquering the challenge imposed by multipath fading channel. The sensing of EU systems consists of two steps. In the first step, the maximum likelihood (ML) estimates of the frequency bands of EU systems are calculated; in the second step, detection is performed at each suspected band to decide whether an EU system is truly in operation. The idea is that an EU system appears at a segment of continuous subcarriers. This fact can be exploited by employing measurements at a continual subcarriers and executing the sensing along the frequency domain. An autoregressive (AR) model is adopted to track the variation of the received EU signal strength along frequencies. It is shown by simulations that the proposed spectrum sensing algorithm is robust in a severe frequency-selective fading channel.
机译:在本文中,解决了基于正交频分复用(OFDM)的认知无线电(CR)的频谱传感问题。目标是识别主要用户系统和其他CR系统(统称为现有用户(EU)系统)未使用的频谱部分,重点是克服多径衰落信道带来的挑战。欧盟系统的传感包含两个步骤。第一步,计算欧盟系统频带的最大似然估计。在第二步中,对每个可疑频段进行检测,以确定EU系统是否真正在运行。这个想法是欧盟系统出现在连续的子载波的一部分中。通过在连续子载波处采用测量并沿频域执行感测,可以利用这一事实。采用自回归(AR)模型来跟踪接收到的EU信号强度沿频率的变化。通过仿真表明,所提出的频谱感测算法在严重的频率选择性衰落信道中具有鲁棒性。

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