DOE OSTI · 1907513
Autonomous Closed-Loop Experimental Characterization and Dynamic Model Validation of a Scaled Underwater Kite
Abstract
This paper presents the closed-loop experimental framework and dynamic model validation for a 1/12-scale underwater kite design. The pool-based tow testing framework described herein, which involves a fully actuated, closed-loop controlled kite and flexible tether, significantly expands upon the capabilities of any previously developed open-source framework for experimental underwater kite characterization. Specifically, the framework has allowed for the validation of three closed-loop flight control strategies, along with a critical comparison between dynamic model predictions and experimental results. In this paper, we provide a detailed presentation of the experimental tow system and kite setup, describe the control algorithms implemented and tested, and quantify the level of agreement between our multi-degree-of-freedom kite dynamic model and experimental data. Finally, we also present a sensitivity analysis that helps to identify the most influential parameters to kite performance and further explain the remaining mismatches between the model and data.
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Abney, Andrew, Reed, James, Naik, Kartik, Bryant, Samuel, Herbert, Dillon, Leonard, Zak, Vadlamannati, Ashwin, Mook, Mariah, Beknalkar, Sumedh, Alvarez, Miguel, Granlund, Kenneth, Bryant, Matthew, Mazzoleni, Andre, Fathy, Hosam, Vermillion, Chris. 2022-04-22. Autonomous Closed-Loop Experimental Characterization and Dynamic Model Validation of a Scaled Underwater Kite. https://doi.org/10.1115/1.4054141
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