On the Optimal Sizing of Power Take-Off Systems for Wave Energy Converters: Article No. 123375

Ben McGilton, Aryana Nakhai, Jim McNally

Research output: Contribution to journalArticlepeer-review

Abstract

The power take-off (PTO) system in a wave energy converter (WEC) is the means by which the energy in an ocean wave is converted into useful energy. There has been a general lack of technology convergence in the wave energy industry and PTO design has been largely device-specific with the design process determined by the WEC developer. An optimized PTO design can significantly affect the efficiency, reliability, performance, and overall cost and viability of a device. There remains a need in the marine energy industry for best practices and efficient design processes to be identified as it could greatly benefit developers and researchers in designing an optimal WEC PTO. This research utilizes the open-source Matlab-Simulink based software, WEC-Sim, which was developed by the National Renewable Energy Laboratory, and the Eagle, a high-performance computing system, to model and optimize two WECs of different archetypes and then investigates if any trends exist that can be exploited for greater efficiency in optimal PTO design. The results from this research indicate that there may be an optimal sizing for WEC PTOs for both power and PTO force rating and that substantial reductions can be made in the cost of a device without significant loss in the energy produced. Furthermore this optimal sizing may be independent of WEC type and deployment location. With an optimal, or near optimal, approach to WEC PTO sizing demonstrated, a methodology is proposed to address the challenge of nameplate ratings in the wave energy industry.
Original languageAmerican English
Number of pages13
JournalRenewable Energy
Volume252
DOIs
StatePublished - 2025

NREL Publication Number

  • NREL/JA-5700-87775

Keywords

  • capacity factor
  • LCOE
  • LCOx
  • nameplate rating
  • PTO
  • wave energy
  • WEC

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