LCOE Content Model for the Heaving Point Absorber Buoy
This is the LCOE analysis spreadsheet and content model for the heaving point absorber buoy developed for controls purposes. The cost assessment was done on a wave-farm of 100-units.
Citation Formats
Re Vision Consulting. (2017). LCOE Content Model for the Heaving Point Absorber Buoy [data set]. Retrieved from https://dx.doi.org/10.15473/1415579.
Previsic, Mirko, Karthikeyan, Anantha. LCOE Content Model for the Heaving Point Absorber Buoy. United States: N.p., 14 Jul, 2017. Web. doi: 10.15473/1415579.
Previsic, Mirko, Karthikeyan, Anantha. LCOE Content Model for the Heaving Point Absorber Buoy. United States. https://dx.doi.org/10.15473/1415579
Previsic, Mirko, Karthikeyan, Anantha. 2017. "LCOE Content Model for the Heaving Point Absorber Buoy". United States. https://dx.doi.org/10.15473/1415579. https://mhkdr.openei.org/submissions/225.
@div{oedi_225, title = {LCOE Content Model for the Heaving Point Absorber Buoy}, author = {Previsic, Mirko, Karthikeyan, Anantha.}, abstractNote = {This is the LCOE analysis spreadsheet and content model for the heaving point absorber buoy developed for controls purposes. The cost assessment was done on a wave-farm of 100-units.}, doi = {10.15473/1415579}, url = {https://mhkdr.openei.org/submissions/225}, journal = {}, number = , volume = , place = {United States}, year = {2017}, month = {07}}
https://dx.doi.org/10.15473/1415579
Details
Data from Jul 14, 2017
Last updated Jul 15, 2022
Submitted Jul 14, 2017
Organization
Re Vision Consulting
Contact
Mirko Previsic
916.977.3970
Authors
Keywords
MHK, Marine, Hydrokinetic, energy, power, 1-DoF, Controls, Optimal Control, LCOE, levelized cost of energy, wave energy, PTO, power take off, Humboldt, CA, USA, MPC, model predictive control, point absorber, WEC, economics, point, absorber, wave, heave, heaving, buoy, farm, symmetrical, content model, cost, ocean, point absorber buoyDOE Project Details
Project Name Development of Optimal Control System for Three Different WEC Devices
Project Lead Bill McShane
Project Number EE0007173