Non-stationary stochastic optimization of an oscillating water column
Date published
2017-07-31
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World Academy of Science, Engineering and Technology
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Conference paper
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Maria L. Jalon and Feargal Brennan. Non-stationary stochastic optimization of an oscillating water column. ICRET 2017 : 19th International Conference on Renewable Energy Technology, 27-28 July 2017, Zurich, Switzerland
Abstract
A non-stationary stochastic optimization methodology is applied to an OWC (oscillating water column) to find the design that maximizes the wave energy extraction. Different temporal cycles are considered to represent the long-term variability of the wave climate at the site in the optimization problem. The results of the non-stationary stochastic optimization problem are compared against those obtained by a stationary stochastic optimization problem. The comparative analysis reveals that the proposed non-stationary optimization provides designs with a better fit to reality. However, the stationarity assumption can be adequate when looking at averaged system response.
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Keywords
Non-stationary stochastic optimization, oscillating, temporal variability, wave energy