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Cycle adaptive feedforward approach control of an electromagnetic valve actuator.

, , and . CDC, page 5698-5703. IEEE, (2008)

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Flatness-Based Tracking of an Electromechanical Variable Valve Timing Actuator With Disturbance Observer Feedforward Compensation., and . IEEE Trans. Control. Syst. Technol., 16 (4): 652-663 (2008)Machine Learning-based Diesel Engine-Out NOx Reduction Using a plug-in PD-type Iterative Learning Control., , , and . CCTA, page 450-455. IEEE, (2020)Safe deep reinforcement learning in diesel engine emission control., , , , and . J. Syst. Control. Eng., 237 (8): 1440-1453 (September 2023)Introducing a Deep Neural Network-based Model Predictive Control Framework for Rapid Controller Implementation., , , , , and . CoRR, (2023)Discrete output regulator design for linear distributed parameter systems., , and . Int. J. Control, 95 (3): 603-619 (2022)Numerically Modeled Dynamic Response of Perfect and Leaky Dielectric Droplets in an Electric Field., , and . ICMENS, page 99. IEEE Computer Society, (2005)Developing a Time-Efficient Model for Solid Oxide Fuel Cells Using Self-Supervised Convolutional Autoencoder and Stateful LSTM Network., , , , , , and . ACC, page 86-91. IEEE, (2024)Control Oriented Modeling of Combustion Phasing for an HCCI Engine., and . ACC, page 3694-3699. IEEE, (2007)Cycle adaptive feedforward approach control of an electromagnetic valve actuator., , and . CDC, page 5698-5703. IEEE, (2008)A HIL Testbed for Initial Controller Gain Tuning of a Small Unmanned Helicopter., , , and . Journal of Intelligent and Robotic Systems, 73 (1-4): 289-308 (2014)