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Performance comparison of five phase and three phase induction machines under steady state including losses and saturation.

, , , and . IECON, page 3036-3041. IEEE, (2013)

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Full four capacitor circuit compensation for inductive power transfer., , , and . I2MTC, page 183-187. IEEE, (2013)Estimation of Electrical Parameters of the Double-Cage Model of Induction Motors Using Manufacturer Data and Genetic Algorithm., , , , and . IECON, page 1-6. IEEE, (2022)Unbalanced operation of five-phase induction machines using steady state symmetrical components ℄ Part II: Study of typical cases., , , and . IECON, page 1813-1818. IEEE, (2015)Performance comparison of five phase and three phase induction machines under steady state including losses and saturation., , , and . IECON, page 3036-3041. IEEE, (2013)Stochastic Approach for Evaluating the Operation of Electric Power Distribution Systems., , , and . ISGT, page 1-5. IEEE, (2024)Torque capability of high phase induction machines with sinusoidal and trapezoidal airgap field under steady state., , , and . IECON, page 3183-3188. IEEE, (2013)Airgap induction of five-phase induction machines operating with one opened phase., , and . IECON, page 1590-1595. IEEE, (2016)Unbalanced operation of five-phase induction machines using steady state symmetrical components - Part I: Theoretical considerations., , , and . IECON, page 1807-1812. IEEE, (2015)Comparison of operating curves of five-phase and three-phase induction machines of same size., , , and . IECON, page 450-455. IEEE, (2014)Estimation of Electrical Parameters of Five-Phase Permanent Magnet Synchronous Machines Using Instantaneous Impedance., , , , , and . IECON, page 1-6. IEEE, (2023)