Abstract
Deconvolution with a signal received on a hydrophone in shallow water is made difficult by distortions caused by dynamic multipath propagation. It is acceptable to model the shallow water channel between the source and each hydrophone receiver as a multiple time-delay attenuation channel. Blind deconvolution techniques can adapt the processing to the acoustic environment if reasonable assumptions about the nature of the underwater channel used to represent the multipath propagation can be made. A blind deconvolution methodology for shallow-water channel estimation is employed and presented here, with no prior information on characteristics of the source or the channel. The methodology is based on the natural gradient in frequency-domain to minimize the mutual information. For its high efficiency and less computational complexity it is suitable for estimation of shallow-water channel. An application example of the approach using synthetic ocean acoustic data is also presented.
Original language | English |
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Pages | 3269-3272 |
Number of pages | 4 |
State | Published - 2004 |
Event | WCICA 2004 - Fifth World Congress on Intelligent Control and Automation, Conference Proceedings - Hangzhou, China Duration: 15 Jun 2004 → 19 Jun 2004 |
Conference
Conference | WCICA 2004 - Fifth World Congress on Intelligent Control and Automation, Conference Proceedings |
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Country/Territory | China |
City | Hangzhou |
Period | 15/06/04 → 19/06/04 |
Keywords
- Blind deconvolution
- Channel estimation
- Natural gradient