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Advanced Hybrid Energy System for Wet and Dry Submersibles

Award Information
Agency: Department of Defense
Branch: Navy
Contract: N00024-11-C-4162
Agency Tracking Number: N092-132-0377
Amount: $300,000.00
Phase: Phase II
Program: SBIR
Solicitation Topic Code: N092-132
Solicitation Number: 2009.2
Timeline
Solicitation Year: 2009
Award Year: 2011
Award Start Date (Proposal Award Date): 2011-04-01
Award End Date (Contract End Date): N/A
Small Business Information
2501 Earl Rudder Freeway South
College Station, TX -
United States
DUNS: 184758308
HUBZone Owned: No
Woman Owned: No
Socially and Economically Disadvantaged: No
Principal Investigator
 Daniel Houy
 PD Specialist III/PD Engr
 (979) 764-2200
 daniel.houy@lynntech.com
Business Contact
 G. Hisaw
Title: Sr. Contracts Administrat
Phone: (979) 764-2200
Email: renee.hisaw@lynntech.com
Research Institution
 Stub
Abstract

The demand for greater and safer energy storage for the wet and dry submersibles and buoys has pushed the limits of current battery technology. This energy demand is in response to the need for extended mission operations and advances in electronic equipment needed for greater combat effectiveness. By replacing the existing battery with a fuel cell hybrid system, extended operation periods are possible while reducing the safety risk. In a hybrid system a high power source is used to handle start up and peak power demands while the fuel cell is used to provide the nominal power and recharging energy. This configuration allows for both components to be sized specifically for the power needed. To efficiently distribute the power, a proprietary power management system architecture is utilized that is able to adjust to the power demands and maintain a high system efficiency. The control logic which includes the power management system also monitors the system health to ensure safe operation. During the project, Lynntech will develop components for a fuel cell hybrid power system for wet and dry submersibles and buoys. The development of a fuel cell hybrid system for these platforms will extend mission times and increase safety.

* Information listed above is at the time of submission. *

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