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Root-MUSIC-based azimuth-elevation angle-of-arrival estimation with uniformly spaced but arbitrarily oriented velocity hydrophones

机译:均匀间隔但任意定向的速度水听器的基于根-MUSIC的方位角高程到达角估计

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This novel underwater acoustic azimuth-elevation source localization scheme realizes the eigenstructure-based polynomial rooting procedure for an L-shaped uniformly spaced array of diversely oriented and possibly spatially co-located velocity hydrophones and an optional pressure hydrophone. A velocity hydrophone measures a Cartesian component of the acoustic particle velocity vector of the incident wavefield. At each uniformly spaced array grid, one or more co-located and diversely oriented velocity hydrophones and/or a pressure hydrophone are placed, with the number and orientations of velocity hydrophones possibly varying from grid position to grid position in some known prearranged manner. The diverse orientation of the velocity hydrophones, however, disrupts the Vandermonde array manifold structure in each of the two uniform-linear-array legs of the L-shaped array. Nonetheless, ingenuous mathematical manipulations proposed in this paper restore the disrupted Vandermonde algebraic structure, thereby permitting once again the use of polynomial rooting to estimate the directions of arrival. A proposed pairing procedure matches each source's x-axis direction cosine estimate with its corresponding y-axis direction cosine estimate. Simulation results verify the efficacy of the proposed scheme.
机译:这种新颖的水下声方位角高程源定位方案为L形均匀间隔排列的,方向不同且可能在空间上共置的速度水听器和可选的压力水听器实现了基于本征结构的多项式生根过程。速度水听器测量入射波场的声粒子速度矢量的笛卡尔分量。在每个均匀间隔的阵列网格处,放置一个或多个同位且取向不同的速度水听器和/或压力水听器,速度水听器的数量和方向可能以某种已知的预定方式在网格位置之间变化。然而,速度水听器的不同定向破坏了L形阵列的两个均匀线性阵列支腿中的每一个的Vandermonde阵列歧管结构。尽管如此,本文提出的巧妙的数学操作恢复了被破坏的范德蒙德代数结构,从而再次允许使用多项式求根来估计到达方向。提议的配对过程将每个源的x轴方向余弦估计值与其对应的y轴方向余弦估计值进行匹配。仿真结果验证了该方案的有效性。

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