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首页> 外文期刊>IEEE sensors journal >Spectrum Sensing of OFDM Signals Over Multipath Fading Channels and Practical Considerations for Cognitive Radios
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Spectrum Sensing of OFDM Signals Over Multipath Fading Channels and Practical Considerations for Cognitive Radios

机译:多径衰落信道上OFDM信号的频谱感知和认知无线电的实际考虑

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摘要

Despite the promising role of orthogonal frequency-division multiplexing (OFDM) in communication systems, the spectrum sensing of OFDM signals and its practical considerations for cognitive radios (CRs) remain vital and challenging topics. This paper presents a new scheme for detecting OFDM signals based on the Neyman–Pearson (NP) principle. In contrast to conventional approaches in which additive white Gaussian noise (AWGN) channels are considered or empirical second-order statistics based on correlation coefficients are employed, to improve the detection performance, the proposed approach involves considering multipath fading channels and the classical NP detector. The log-likelihood ratio (LLR) test is formulated without requiring additional pilot symbols by using the redundancy of the cyclic prefix. Analytical results indicate that the LLR of received samples is the sum of the log-likelihood function (LLF) of the samples, which is typically used for estimating unknown parameters, and the LLR of an energy detector (ED). These results provide insight into the NP detector and the relationship between the NP detector, a detector based on the LLF, and the ED. Because many unknown parameters must be estimated in the NP detector, two practical generalized log-likelihood ratio test (GLRT) detectors are designed. To develop a channel-independent GLRT, which is crucial for achieving favorable performance over multipath fading channels, the complementary property of the correlation coefficient is employed to derive an estimate independent of multipath channel profiles. Simulation results confirm the advantages of the proposed detector compared with the state-of-the-art detectors.
机译:尽管正交频分复用(OFDM)在通信系统中发挥了令人鼓舞的作用,但是OFDM信号的频谱感测及其对认知无线电(CR)的实际考虑仍然是至关重要的且具有挑战性的主题。本文提出了一种基于Neyman-Pearson(NP)原理的OFDM信号检测新方案。与常规方法相比,传统方法考虑了加性高斯白噪声(AWGN)通道,或者采用基于相关系数的经验二阶统计量来提高检测性能,而该方法涉及考虑多径衰落通道和经典NP检测器。通过使用循环前缀的冗余,制定了对数似然比(LLR)测试,而无需其他导频符号。分析结果表明,接收到的样本的LLR是样本的对数似然函数(LLF)与能量检测器(ED)的LLR之和,该对数似然函数通常用于估计未知参数。这些结果提供了对NP检测器以及NP检测器,基于LLF的检测器和ED之间关系的深入了解。由于必须在NP检测器中估计许多未知参数,因此设计了两个实用的广义对数似然比测试(GLRT)检测器。为了开发与信道无关的GLRT,这对于在多径衰落信道上实现良好的性能至关重要,相关系数的互补特性可用于推导独立于多径信道配置文件的估计。仿真结果证实了所提出的探测器与最新探测器相比的优势。

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