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2D DOA Estimation Exploiting Vertical Synthetic Planar Arrays

机译:2D DOA估计利用垂直合成平面阵列

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摘要

In this paper, vertical motions of sparse linear arrays (SLAs) are utilized to generate equivalent synthetic planar arrays for two-dimensional (2D) direction-of-arrival (DOA) estimation. The proposed array geometry named vertical synthetic planar array (VSPA) consists of an arbitrary SLA on the x-axis and a series of its time-shifted arrays in the vertical orientation. With the original linear array and the moving trail known, the difference coarray of VSPA can be easily obtained. By utilizing both the synthetic aperture processing and the coarray technique, VSPA has the ability to construct a synthetic planar array with only an SLA used. Compared with the traditional sparse planar arrays (SPAs), such as 2D nested array and 2D coprime array, VSPA can achieve higher degree-of-freedom and improved 2D DOA estimation performance with the same number of sensors. Moreover, as different original linear arrays and moving trails can be chosen for different applications, the construction of VSPA is of high flexibility. Numerical simulations are presented to verify the superiority of the proposed VSPA geometry over other typical SPAs.
机译:在本文中,利用稀疏线性阵列(SLA)的垂直运动来为二维(2D)到达方式(DOA)估计产生等效的合成平面阵列。所提出的阵列几何形状名为垂直的合成平面阵列(VSPA)包括在X轴上的任意SLA和垂直方向上的一系列时移阵列。利用原始线性阵列和已知的移动路径,可以容​​易地获得VSPA的差异偶联。通过利用合成孔径处理和携带杂面技术,VSPA具有仅使用所使用的SLA构造合成平面阵列的能力。与传统的稀疏平面阵列(SPA)相比,如2D嵌套阵列和2D Coprime阵列,VSPA可以实现更高的自由度和改进的2D DOA估计性能,具有相同数量的传感器。此外,随着可以选择不同的原始线性阵列和移动路径,可以为不同的应用选择,VSPA的构造具有高灵活性。提出了数值模拟以验证所提出的VSPA几何形状的优越性。

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