Multiantenna detection of constant-envelope signals in noise of unknown variance

Daniel Romero, Roberto López-Valcarce
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引用次数: 3

Abstract

Detection of unknown signals with constant modulus (CM) using multiple antennas in additive white Gaussian noise of unknown variance is considered. The channels from the source to each antenna are assumed frequency-flat and unknown. This problem is of interest for spectrum sensing in cognitive radio systems in which primary signals are known to have the CM property. Examples include analog frequency modulated signals such as those transmitted by wireless microphones in the TV bands and Gaussian Minimum Shift Keying modulated signals as in the GSM cellular standard. The proposed detector, derived from a Generalized Likelihood Ratio (GLR) approach, exploits both the CM property and the spatial independence of noise, outperforming the GLR test for Gaussian signals as shown by simulation.
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方差未知噪声中恒包络信号的多天线检测
研究了方差未知的加性高斯白噪声中多天线恒模未知信号的检测问题。假设从源到每个天线的信道是平坦的和未知的。这个问题对认知无线电系统中的频谱感知感兴趣,其中主信号已知具有CM特性。示例包括诸如在电视频带中由无线麦克风传输的那些模拟频率调制信号和如在GSM蜂窝标准中的高斯最小移位键控调制信号。该检测器由广义似然比(GLR)方法衍生而来,利用了噪声的CM特性和空间独立性,优于高斯信号的GLR测试。
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