Michael J. Wilmut

Martin Musil, Michael J. Wilmut, N. Ross Chapman; A hybrid simplex genetic algorithm for estimating geoacoustic parameters using matched-field inversion, IEEE J. Oceanic Eng., vol. 24, pp. 358 - 369, July 1999.

Michael J. Wilmut, John M. Ozard, Kyle O'Keefe, Martin Musil; A piecewise matched-field tracking algorithm, IEEE J. Oceanic Eng., vol. 23, pp. 167 - 173, July 1998.

John M. Ozard, Maureen L. Yeremy, N. Ross Chapman, Michael J. Wilmut; Matched-field processing in a range-dependent shallow water environment in the northeast Pacific Ocean, IEEE J. Oceanic Eng., vol. 21, pp. 377 - 383, October 1996.

Michael J. Wilmut, John M. Ozard, Bryan Woods; An efficient target tracking algorithm for matched field processing, Proceedings of IEEE OCEANS'93 Conference, pp. 81 - 85, October 1993.

John M. Ozard, Michael J. Wilmut, Don G. Berryman, Pierre Zakarauskas; Speed-up and detection performance of a nearest-neighbors algorithm for matched-field processing with a vertical line array, Proceedings of IEEE OCEANS'93 Conference, pp. 86 - 90, October 1993.

John M. Ozard, Michael J. Wilmut, Don G. Berryman, Pierre Zakarauskas; A nearest neighbor algorithm for fast matched-field processing with a vertical line array, IEEE J. Oceanic Eng., vol. 18, pp. 265 - 270, July 1993.

M. J. Wilmut, N. R. Chapman, S. Anderson; Statistical properties of horizontal, vertical and omnidirectional underwater noise fields at low frequency, Proceedings of IEEE OCEANS'93 Conference, pp. 269 - 273, October 1993.


Michael J. Wilmut received the B.Sc. degree from Sir George Williams, Montreal, PQ, Canada, in 1964, and the Ph.D. degree from Queens University, Kingston, ON, Canada, in 1970.

From 1971 to 1995, he was employed as a Professor at Royal Roads Military College, Victoria, BC. Since 1995, he has been employed as a Professor at Royal Military College, Kingston, ON, and was at Esquimalt Defence Research Detachment of Defence Research Establishment Atlantic during a sabbatical in 1996-1997. His research interests include signal processing, matched-field processing, and characterization of underwater ambient noise.