TRITON SYSTEMS, INC. — Department of Energy SBIR Phase II: 13c

TRITON SYSTEMS, INC. — SBIR Phase II award from Department of Energy.

Amount
$1,099,468
Agency
Department of Energy
Program / Phase
SBIR · Phase II
Topic
13c
NAICS
Place of performance
MA
Period
2021-08-23 → 2023-08-22

Description

Promotion of the Blue Economy requires a deeper understanding of the oceans to enable better management of the many aspects of oceanic sustainability. Our understanding has increased dramatically over the last 20 years in response to growing concerns about Global Climate Change, sea level rise, and the dramatic declines in many fisheries, but much more data is needed to support relevant research. The low power budgets of existing ocean observing buoys limit the amount of data that can be collected and communicated. Adding a wave energy converter WEC to a buoy will more than double its power budget and greatly increase the amount of data available to scientists. Triton is addressing this problem by developing a pointabsorber type WEC that is integrates with existing buoy designs. It uses an oscillating water column effect from buoy heave motion to drive an electrical generator. A specialized control algorithm will maximize power output from irregular ocean wave input. In Phase I we demonstrated the feasibility of using a wave energy converter to provide power for ocean observing and navigational buoys by: Demonstrating the power generating potential of the WEC by analysis and simulation using real sea state data as input., Developing a detailed WEC design that addresses the critical mechanical, structural and electrical challenges present in ocean systems., Specifying a control methodology to maximize power output of the WEC. The Phase II builds on the tasks that were completed during the Phase I effort. The specific objectives of the proposed Phase II research include: Design and fabrication of a prototype Wave Energy Converter and related components, Demonstrations of prototype in ocean environment, Lab testing of lineartorotary converter to characterize performance and develop control methodology, Validation Phase I simulation results with physical data. In addition to enabling larger power budgets for ocean observing buoys, the proposed WEC can be used to provide power for navigational buoys, create UAV recharging nodes, provide power for offshore aquaculture, and provide long endurance surveillance nodes for the Navy with minimal surface presence.