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Detection of DS-SS Signals over Fading Channels without Prior Knowledge of Spreading Sequence by Measuring Signal Nongaussianity

机译:在没有先验扩展序列知识的情况下,通过测量信号的非高斯性来检测衰落信道上的DS-SS信号

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Direct sequence spread spectrum transmissions (DS-SS) are now widely used for secure communications, as well as for multiple access. Since DS-SS signals use a large bandwidth, their power spectral densities can be well below the noise level. Hence, such signals are difficult to be detected. In this paper, we propose two different methods (ratio peaks greater than threshold (RPT) and mean distance between peaks greater than threshold (MDP)) for detecting the presence of DS-SS signals hidden in the noise over flat or frequency selective fading channels. These methods require no prior knowledge of the spreading sequence used by the transmitter. Both methods use the estimated autocorrelation of the received signal. We also propose a new algorithm, which is based on the kurtosis function of the received signal autocorrelation. This new proposed algorithm performs better than RPT method. Simulation results show that these methods can detect a signal far below the noise level and the exact code length of the DS-SS signal can also be determined
机译:直接序列扩频传输(DS-SS)现在被广泛用于安全通信以及多路访问。由于DS-SS信号使用大带宽,因此它们的功率谱密度可以大大低于噪声水平。因此,难以检测到这样的信号。在本文中,我们提出了两种不同的方法(比率峰值大于阈值(RPT)和峰值之间的平均距离大于阈值(MDP))来检测平坦或频率选择性衰落信道中隐藏在噪声中的DS-SS信号的存在。这些方法不需要对发射机使用的扩频序列有先验知识。两种方法都使用接收信号的估计自相关。我们还提出了一种新算法,该算法基于接收信号自相关的峰度函数。该新提出的算法比RPT方法具有更好的性能。仿真结果表明,这些方法可以检测到远低于噪声水平的信号,并且还可以确定DS-SS信号的确切代码长度

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