48 results on '"Knobles, D. P."'
Search Results
2. Feature-based maximum entropy for geophysical properties of the seabeda).
3. Maximum entropy inference of seabed properties using waveguide invariant features from surface ships
4. Impact of data augmentation on supervised learning for a moving mid-frequency source
5. Influence of seabed on very low frequency sound recorded during passage of merchant ships on the New England shelf
6. Learning location and seabed type from a moving mid-frequency source
7. Sound speed and attenuation in muddy sediments from low-frequency acoustic measurements
8. Bayesian-Maximum Entropy method applied to seabed geoacoustic models using broadband and narrowband acoustic measurements
9. Maximum entropy inference of seabed attenuation parameters using ship radiated broadband noise
10. Bill Carey as a scientist, motivator, sponsor, and colleague
11. ONR Basic Research in Ocean Acoustics for FY05
12. Maximum entropy approach to statistical inference for an ocean acoustic waveguide
13. A nonlocal effective operator for coupling forward and backward propagating modes in inhomogeneous media
14. Progress Report on Comparisons of East China Sea Bottom Scattering Strengths at Low Frequency
15. A Progress Report on the Estimation of Geoacoustic Parameters from Measured Time Series Taken During the East China Sea Component of ASIAEX
16. Frequency and Angular Dependence of Low Frequency East China Sea Bottom Scattering Strengths
17. Low-frequency geoacoustic model for the effective properties of sandy seabottoms
18. Marginal probability distributions for seabed parameter values from simultaneous processing of vertical and horizontal apertures.
19. Analysis of wind-driven ambient noise in a shallow water environment with a sandy seabed
20. Seabed acoustics of a sand ridge on the New Jersey continental shelf
21. Geoacoustic inversion of short range source data using a plane wave reflection coefficient approach
22. Broadband modeling of downslope propagation in a penetrable wedge
23. Geoacoustic inversion using broadband noise from surface ships
24. Environmental uncertainty in modeling of shallow‐water reverberation
25. Geoacoustic inversion in range-dependent ocean environments using a plane wave reflection coefficient approach
26. Analysis of measured broadband acoustic propagation using a parabolic equation approach
27. Scattering in a 3‐D wedge with a rough bottom boundary
28. Matched field processing in a multisource environment
29. Inversion for source levels and environmental and source track parameters
30. Modeling of shallow water reverberation data
31. Using measured acoustic data to obtain estimates of seabed physical parameters
32. Low frequency coupled mode sound propagation over a continental shelf
33. Broadband sound propagation in shallow water and geoacoustic inversion
34. Modeling of reverberation in the East China Sea
35. A range‐dependent propagation model based on a combination of ray theory and plane‐wave reflection coefficients
36. A comparison of East China Sea low frequency bottom scattering strength determinations
37. Separation of scattering mechanisms for the Asian Sea International Acoustics Experiment East China Sea reverberation measurements
38. Analysis of time series data in the East China Sea generated from explosive sources
39. A two-way coupled mode simulation of sound propagation in a shallow water wedge
40. Scattering of acoustic waves from rigid targets in stratified waveguides
41. A practical application of the Galerkin method to the broadband calculation of normal modes for underwater acoustics
42. Shallow water source track localization using matched multipath correlations
43. Broadband localization by matched fields in range and bearing in shallow water
44. Solutions of coupled-mode equations with a large dimension in underwater acoustics
45. Solutions of coupled‐mode equations with a large dimension in underwater acoustics
46. New algorithm for calculating normal modes in broadband applications
47. An Investigation of Acoustic Interaction with the Ocean Bottom from Experimental Time Series Generated by Explosive Sources.
48. Deep sediment heterogeneity inferred using very low-frequency features from merchant shipsa).
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