Publication | Open Access
Array invariant-based ranging of a source of opportunity
25
Citations
11
References
2017
Year
EngineeringSensor ArrayRange SearchingMarine EngineeringLocalizationUnderwater ImagingShallow WaterCombinatorial OptimizationArray InvariantSonar Signal ProcessingAnisotropic NoiseSynthetic Aperture RadarInverse ProblemsComputer ScienceArray Invariant-based RangingSignal ProcessingRadarArray ProcessingOcean EngineeringAerospace EngineeringRemote Sensing
The feasibility of tracking a ship radiating random and anisotropic noise is investigated using ray-based blind deconvolution (RBD) and array invariant (AI) with a vertical array in shallow water. This work is motivated by a recent report [Byun, Verlinden, and Sabra, J. Acoust. Soc. Am. 141, 797-807 (2017)] that RBD can be applied to ships of opportunity to estimate the Green's function. Subsequently, the AI developed for robust source-range estimation in shallow water can be applied to the estimated Green's function via RBD, exploiting multipath arrivals separated in beam angle and travel time. In this letter, a combination of the RBD and AI is demonstrated to localize and track a ship of opportunity (200-900 Hz) to within a 5% standard deviation of the relative range error along a track at ranges of 1.8-3.4 km, using a 16-element, 56-m long vertical array in approximately 100-m deep shallow water.
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