Song H C, Cho Chomgun
Scripps Institution of Oceanography, La Jolla, California 92093-0238, USA.
J Acoust Soc Am. 2017 Jan;141(1):183. doi: 10.1121/1.4973812.
The array invariant proposed for robust source localization in shallow water exploits the beam-time migration of broadband signals. The approach requires minimal knowledge of the environment, but involves plane wave beamforming using a short-aperture vertical array in stratified acoustic waveguides. In this paper, the array invariant approach is extended to a large-aperture vertical array that is sparse with significant variation of the sound speed across the aperture for conventional beamforming. The extension is feasible because the array invariant in shallow water utilizes surface/bottom-reflected arrivals that behave like those in ideal waveguides. Robust source-range estimation is demonstrated using data from a 16-element, 56-m long vertical array at various ranges (1.5-3.5 km) from a broadband source (0.5-2 kHz) in approximately 100-m deep shallow water.
为实现浅水中稳健的源定位而提出的阵列不变量利用了宽带信号的波束-时间偏移。该方法对环境的了解要求极低,但涉及在分层声波导中使用短孔径垂直阵列进行平面波波束形成。在本文中,阵列不变量方法被扩展到一个大孔径垂直阵列,该阵列稀疏,且在孔径范围内声速有显著变化,适用于传统波束形成。这种扩展是可行的,因为浅水中的阵列不变量利用了表面/底部反射波,其行为类似于理想波导中的反射波。利用来自一个16元、56米长垂直阵列的数据,在大约100米深的浅水中,对距离宽带源(0.5 - 2千赫)不同范围(1.5 - 3.5千米)处进行了稳健的源-距离估计演示。