James H. Wilson, Subramaniam D. Rajan, J. Mark Null; Inversion techniques and the variability of sound propagation in shallow water, IEEE J. Oceanic Eng., vol. 21, pp. 321 - 323, October 1996.
A. D. Blackowiak, Subramaniam D. Rajan; Multi-path arrival estimates using simulated annealing: Application to crosshole tomography experiment, IEEE J. Oceanic Eng., vol. 20, pp. 157 - 165, July 1995.
Kenneth R. Peal, Subamaniam D. Rajan, George V. Frisk; Multi-season acoustic tomography experiment in the Arctic, Proceedings of IEEE OCEANS'93 Conference, pp. 41 - 46, October 1993.
Subramaniam D. Rajan, George V. Frisk, James F. Lynch; On the determination of modal attenuation coefficients and compressional wave attenuation profiles in a range-dependent environment in Nantucket Sound, IEEE J. Oceanic Eng., vol. 17, pp. 118 - 128, January 1992.
Pradip M. Bakshi, Charles H. Bianchi, Subramaniam D. Rajan, Kondagunta Sivaprasad; A direct inversion scheme for computing the velocity profile from reflected data, IEEE J. Oceanic Eng., vol. 12, pp. 433 - 442, April 1987.
J. F. Lynch, G. V. Frisk, S. D. Rajan, G. J. Tango, M. F. Werby, A. Nagl, H. Uberall; Three Related Resonance Methods for the Determination of Sea Floor Geoacoustic Properties, Proceedings of MTS/IEEE OCEANS'86 Conference, pp. 315 - 324, September 1986.
Subramaniam D. Rajan received the B.E. degree in electrical engineering from the University of Madras, Madras, India, in 1954, and the Ph.D. degree in oceanographic engineering from the Massachusetts Institute of Technology (MIT)/Woods Hole Oceanographic Institution (WHOI) Joint Program, Woods Hole, MA, in 1985.
He worked as a Research Associate from 1986 to 1989, as an Assistant Scientist from 1989 to 1993, and as an Associate Scientist from 1993 to 1995, all at the Department of Applied Ocean Physics and Engineering, WHOI, Woods Hole, MA. He is currently a Senior Research Scientist at Scientific Solutions, Inc., Kirkland, WA. His research interests are in inverse theory, shallow-water acoustics, scattering from rough interfaces, and Arctic acoustics.