基于侦察阵列运动平滑的相干源直接定位方法

    Direct Position Determination of Coherent Sources Based on Moving Smoothing of Electronic Reconnaissance Arrays

    • 摘要: 针对相干辐射源的定位需求,文中提出了一种基于分布式电子侦察阵列的相干源直接定位方法。该方法基于侦察阵列运动带来的阵列相位中心移动特性,结合空间平滑解相干思想,对每个阵列运动后不同时刻的数据协方差矩阵进行平滑,在每个单独阵列上对相干源解相干,再通过空间谱高分辨直接定位技术获得相干源的位置。传统空间平滑方法对阵列构型有限制,只适用于均匀线阵或圆阵,并且损失了阵列孔径长度,从而造成了角度估计性能的下降。不同于传统平滑方法,所提方法利用整个阵列的运动特性进行平滑,不损失阵列孔径大小,而且适用于任意阵列流形结构。计算机仿真结果验证了该方法在相干辐射源的角度估计和位置估计中的有效性。

       

      Abstract: Aiming at the requirements of coherent radiation source location, a direct position determination method of coherent sources based on distributed electronic reconnaissance arrays is proposed in this paper. Based on the phase center movement characteristics caused by the motion of reconnaissance arrays, the proposed method combines the idea of spatial smoothing to perform spatial smoothing on the covariance matrices of data at different instants after each array motion. Coherent sources are decoupled on each individual array, then the positions of coherent sources are obtained by using spatial spectrum high-resolution direct position determination technique. Traditional spatial smoothing algorithms have limitations on array configurations, and are only applicable to uniform linear arrays or circular arrays, resulting in losses of array aperture lengths and decreases in angle estimation performances. Different from traditional spatial smoothing algorithms, the proposed method exploits the movement characteristics of the entire array for smoothing without losing the array aperture size. The proposed method is applicable to any array manifold structure, and its effectiveness on angle estimation and position estimation of coherent radiation sources has been verified by computer simulation.

       

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