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Flatness Based Optimal Control for Induction Machine Drives

, and . 52, 15, page 591-596. Frankfurt, Elsevier, (2019)
DOI: 10.1016/j.ifacol.2019.11.740

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Model predictive energy management for induction motor drives and all-wheel-drive battery electric vehicles : a flatness based approach. Universität Stuttgart, Düren, Dissertation, (2021)Current and Voltage Harmonics in the Powertrain of Electric Vehicles, , , and . IEEE transactions on vehicular technology, 69 (10): 10736-10749 (2020)Sensitivity Analysis and Fisher-Information Matrix for a Dynamic Model of a Turntable Ladder, , and . 9th IFAC Symposium on Mechatronic Systems MECHATRONICS 2022, 55, 27, page 172-177. Elsevier, (2022)Forecasts of Electric Vehicle Energy Consumption Based on Characteristic Speed Profiles and Real-Time Traffic Data, , , and . IEEE Transactions on Vehicular Technology, 69 (2): 1404-1418 (2020)Time Optimal Routing of Electric Vehicles Under Consideration of Available Charging Infrastructure and a Detailed Consumption Model, , , and . IEEE transactions on intelligent transportation systems, 21 (12): 5123-5135 (2020)Flatness Based Optimal Control for Induction Machine Drives, and . 52, 15, page 591-596. Frankfurt, Elsevier, (2019)Short Horizon Learning-Based Vehicle Speed Prediction, , and . 2021 American Control Conference (ACC), page 206-211. Piscataway, IEEE, (2021)In-Vehicle System Identification of an Induction Motor Loss Model, and . 21st IFAC World Congress, 53, 2, page 14073-14078. Elsevier, (2020)Analytical Voltage-Source Inverter Current and Conduction Loss Models for EV Power Train Simulations, and . 5th IFAC Conference on Engine and Powertrain Control, Simulation and Modeling E-COSM 2018, 51, 31, page 479-484. Amsterdam, Elsevier, (2018)