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Use of XM radio satellite signal as a source of opportunity for passive coherent location

机译:使用XM无线电卫星信号作为被动相干定位的机会源

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This article investigates the use of an XM signal as a source of opportunity for passive coherent location. An analysis of the echo-to-direct signal ratio and the echo-to-noise ratio emphasises two major target detection problems: the masking effect of the direct signal and the low power of the echo from the reflected signal. First, a subspace-based method is proposed to suppress the direct signal by the projection of the received signal in subspaces orthogonal to direct signal. Then, to overcome the problem of low power of the echo, a directive gain technique is also proposed: an overlapped array is used to provide a directive gain while maintaining a sufficient resolution for using the subspaces method. The number of subarrays employed is optimised for maximum gain while avoiding the occurrence of nuls at the output of a filter matched to the direct path signal, for specific numbers of subarrays. The impact of the subtraction of the noise covariance matrix of noise is also studied. The integrated detection system is then tested through simulations to verify its effectiveness for the detection of moving targets.
机译:本文研究了使用XM信号作为被动相干定位的机会源。对回声与直接信号之比和回声与噪声之比的分析强调了两个主要的目标检测问题:直接信号的掩蔽效应和来自反射信号的回声的低功率。首先,提出了一种基于子空间的方法,通过在正交于直接信号的子空间中投影接收信号来抑制直接信号。然后,为了克服回波功率低的问题,还提出了一种定向增益技术:使用重叠阵列提供定向增益,同时保持足够的分辨率以使用子空间方法。对于特定数目的子阵列,所采用的子阵列的数目被优化以实现最大增益,同时避免在与直接路径信号匹配的滤波器的输出处出现零脉冲。还研究了噪声的噪声协方差矩阵相减的影响。然后通过模拟测试集成检测系统,以验证其对移动目标检测的有效性。

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