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Documents dont l'auteur est "Braatz, Richard D."

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Nombre de documents: 6

Ma, Y., Guo, J., & Braatz, R. D. (2026). GlycoPy: An Equation-Oriented and Object-Oriented Python Framework for Process Modeling, Optimization and Optimal Control. [Présentation]. Systems and Control Transactions, 6, 1884-1890. Présentée à European Symposium on Computer Aided Process Engineering (ESCAPE 36), Sheffield, UK. Lien externe

Ma, Y., Guo, J., & Braatz, R. D. (2026). GlycoPy: A CasADi-based python framework for hierarchical modeling, optimization, and control of bioprocesses. Computers & Chemical Engineering, 213, 109726 (11 pages). Lien externe

Ma, Y., Guo, J., Dubs, A. B., Ganko, K., & Braatz, R. D. (2026). Adaptive nonlinear model predictive control of monoclonal antibody glycosylation in CHO cell culture. Control Engineering Practice, 169, 106731 (15 pages). Lien externe

Ma, Y., Guo, J., Maloney, A. J., & Braatz, R. D. (2025). Quasi-steady-state approach for efficient multiscale simulation and optimization of mAb glycosylation in CHO cell culture. Chemical Engineering Science, 318, 122162 (19 pages). Lien externe

Hong, S., Chattaraj, K. G., Guo, J., Trout, B. L., & Braatz, R. D. (2025). Enhanced O-glycosylation site prediction using explainable machine learning technique with spatial local environment. Bioinformatics, 41(2), btaf034 (9 pages). Lien externe

Pons Royo, M. C., Guo, J., Bal, V., Hong, M. S., Barone, P. W., Springs, S. L., Sinskey, A. J., Stelzer, T., Trout, B. L., Myerson, A. S., & Braatz, R. D. (2024). Advances in Crystallization and Precipitation Technologies for Biotherapeutics. Chemical Engineering Progress (May 2024). Lien externe

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