Mikhail D. Ageev, D. Richard Blidberg, James Jalbert, Charles J. Melchin, Donald P. Troop; Results of the evaluation and testing of the solar powered AUV and its subsystems, Proceedings of the 11th International Symposium on Unmanned Untethered Submersible Technology, vol. 11, pp. 280 - 288, August 1999.
D. Richard Blidberg, James Jalbert, Mikhail D. Ageev; The AUSI/IMTP solar powered autonomous undersea vehicle, Proceedings of IEEE OCEANS'98 Conference, pp. 363 - 368, September 1998.
D. Richard Blidberg, Mikhail D. Ageev, James C. Jalbert; Some design considerations for a solar powered AUV; Energy management and its impact on operational characteristics, Proceedings of the Tenth International Symposium on Unmanned Untethered Submersible Technology, vol. 10, pp. 50 - 59, September 1997.
James C. Jalbert, Pedro Irazoqui-Pastor, Seth Miles, D. Richard Blidberg, Darwin James, Mikhail D. Ageev; Solar AUV technology evaluation and development project, Proceedings of the Tenth International Symposium on Unmanned Untethered Submersible Technology, vol. 10, pp. 75 - 87, September 1997.
D. R. Blidberg, James C. Jalbert, Mikhail Ageev; A solar autonomous underwater vehicle system, Proceedings of MTS/IEEE OCEANS'97 Conference, pp. 833 - 840, September 1997.
James C. Jalbert, Sergei Kasin, Joseph Ayers; Design considerations and experiments of a biologically based undulatory lamprey AUV, Proceedings of the Ninth International Symposium on Unmanned Untethered Submersible Technology, vol. 9, pp. 124 - 138, September 1995.
Steven G. Chappell, James C. Jalbert, Paul Pietryka, John Duchesney; Acoustic communication between two autonomous underwater vehicles, Proceedings of 1994 Symposium on Autonomous Underwater Vehicle Technology, pp. 462 - 469, July 1994.
Roy M. Turner, D. Richard Blidberg, Steven G. Chappell, James C. Jalbert; Generic behaviors: An approach to modularity in intelligent systems control, Proceedings of the Eighth International Symposium on Unmanned Untethered Submersible Technology, vol. 8, pp. 106 - 117, September 1993.
Michael Roer, James Jalbert; Proof of concept: Research using an autonomous underwater vehicle (AUV), Proceedings of the Eighth International Symposium on Unmanned Untethered Submersible Technology, vol. 8, pp. 252 - 264, September 1993.
Rod Haywood, James Jalbert; The use of gis as an analysis tool in navigation and control experiments of an autonomous vehicle for use in monitoring burning oil slicks, Proceedings of the Eighth International Symposium on Unmanned Untethered Submersible Technology, vol. 8, pp. 384 - 399, September 1993.
J. Jalbert, M. Shevenell, S. Chappel, R. Welsh, R. Blidberg; EAVE III-untethered AUV submersible, Proceedings of MTS/IEEE OCEANS'88 Conference, pp. 1259 - 1264, October 1988.
Jim Jalbert; Low level architecture for the new eave vehicle, Proceedings of the Fifth International Symposium on Unmanned Untethered Submersible Technology, vol. 5, pp. 238 - 244, June 1987.
James C. Jalbert; EAVE-East Field Test Results, Proceedings of MTS/IEEE OCEANS'84 Conference, pp. 582 - 587, September 1984.
Jim Jalbert; EAVE East - Goals and applied technologies, Proceedings of the Third International Symposium on Unmanned Untethered Submersible Technology, vol. 3, pp. 62 - 76, June 1983.
James C. Jalbert, Steven G. Chappell; Bubble Memory Recorder For EAVE-East Vehicle, Proceedings of MTS/IEEE OCEANS'83 Conference, pp. 160 - 162, August 1983.
James C. Jalbert received his BSEE and MSEE at the University of New Hampshire in 1963 and 1965 respectively. He spent several years as a development engineer working on smart weapons in the USAF. He also was a Research Associate at Lawrence Livermore National Laboratories where he worked on laser research, signal diagnostics, and bandwidth compression. He has been with the Marine Systems Engineering Laboratory since 1981 and is currently the senior systems engineer. He has been involved in the design, development and field operations of several generations of AHVs, and other processing intensive and robotic systems including a semi-automated magnetometer processing system for detection and location of mines.