In the paper the new solution of the high-speed hybrid induction motor model is presented. The model is characterized by a compact structure, more advantageous distribution of magnetic field in the gap as compared with the previously developed models, and it simultaneously performs the function of a frequency converter. The finite element method is used to solve the coupled equations. The motor analysis has been performed for no load case. Magnetic field in the magnetic core of the new model has been analyzed and the examples of flux lines, a map of magnetic induction distribution, and waveforms of voltages and current are given. At given current densities the values of magnetic induction in individual elements of the magnetic circuit reach satisfactory level and ensure proper operation of the model
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