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Tucker, Maegan, Cheng, Myra, Novoseller, Ellen, Cheng, Richard, Yue, Yisong, Burdick, Joel W., and Ames, Aaron D. Human Preference-Based Learning for High-dimensional Optimization of Exoskeleton Walking Gaits. Retrieved from https://par.nsf.gov/biblio/10281500. IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS) . Web. doi:10.1109/IROS45743.2020.9341416.
Tucker, Maegan, Cheng, Myra, Novoseller, Ellen, Cheng, Richard, Yue, Yisong, Burdick, Joel W., & Ames, Aaron D. Human Preference-Based Learning for High-dimensional Optimization of Exoskeleton Walking Gaits. IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS), (). Retrieved from https://par.nsf.gov/biblio/10281500. https://doi.org/10.1109/IROS45743.2020.9341416
Tucker, Maegan, Cheng, Myra, Novoseller, Ellen, Cheng, Richard, Yue, Yisong, Burdick, Joel W., and Ames, Aaron D.
"Human Preference-Based Learning for High-dimensional Optimization of Exoskeleton Walking Gaits". IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS) (). Country unknown/Code not available. https://doi.org/10.1109/IROS45743.2020.9341416.https://par.nsf.gov/biblio/10281500.
@article{osti_10281500,
place = {Country unknown/Code not available},
title = {Human Preference-Based Learning for High-dimensional Optimization of Exoskeleton Walking Gaits},
url = {https://par.nsf.gov/biblio/10281500},
DOI = {10.1109/IROS45743.2020.9341416},
abstractNote = {},
journal = {IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS)},
author = {Tucker, Maegan and Cheng, Myra and Novoseller, Ellen and Cheng, Richard and Yue, Yisong and Burdick, Joel W. and Ames, Aaron D.},
editor = {null}
}
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