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Invariant detection of orthogonal frequency division multiplexing signals with unknown parameters for cognitive radio applications

机译:参数未知的正交频分复用信号在认知无线电应用中的不变检测

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The authors propose a computationally efficient spectrum sensing solution for an orthogonal frequency division multiplexing (OFDM) signal in a frequency-selective fading channel with additive white Gaussian noise (AWGN). The authors?? assumption is that the data symbols, channel coefficients and the noise variance are all unknown. The nature of the problem leads them to find an invariant detector. The optimum one is uniformly most powerful invariant (UMPI); their effort shows that this test does not exist, as the final decision statistic depends on some unknown parameters; although, they derive the most powerful invariant (MPI) detector, implanting these parameters, to provide an upper bound for invariant detectors. Instead, the authors develop the generalised likelihood ratio test (GLRT), substituting the unknown parameters by their maximum likelihood (ML) estimates in the Neyman??Pearson likelihood ratio. Furthermore, they propose a computationally efficient implementation of the resulting detector. Simulation results show a slight decrease in efficiency against gaining so much computational complexity (CC) improvement. For more comparisons they also derive the conventional energy detector, namely, generalised energy detector (GED) for a binary phase shift keying (BPSK) signal, to show the adequacy of the GLR detector performance which would be demonstrated by simulation results.
机译:作者提出了一种计算有效的频谱感测解决方案,用于具有加性高斯白噪声(AWGN)的选频衰落信道中的正交频分复用(OFDM)信号。作者??假设数据符号,信道系数和噪声方差都是未知的。问题的本质使他们找到了不变的检测器。最优的是统一最强大的不变式(UMPI);他们的努力表明该测试不存在,因为最终决策统计取决于某些未知参数;但是,它们推导了最强大的不变式(MPI)检测器,并植入了这些参数,从而为不变式检测器提供了上限。相反,作者开发了广义似然比检验(GLRT),用Neyman ?? Pearson似然比中的未知参数用其最大似然(ML)估计值代替。此外,他们提出了所得检测器的计算有效实施。仿真结果表明,针对获得如此大的计算复杂度(CC)改进,效率略有下降。为了进行更多比较,他们还得出了常规的能量检测器,即用于二进制相移键控(BPSK)信号的通用能量检测器(GED),以显示GLR检测器性能的充分性,这将通过仿真结果得到证明。

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