首页 /研究 /Discrete-Time Modeling of Interturn Short Circuits in Interior PMSMs
OTHER

Discrete-Time Modeling of Interturn Short Circuits in Interior PMSMs

Lukas Zezula, Matus Kozovsky, Ludek Buchta, Petr Blaha

发表年份
2025
访问权限
开放获取

摘要

This article describes the discrete-time modeling approach for interturn short circuits in interior permanent magnet synchronous motors with concentrated windings that facilitate model-based fault diagnostics and mitigation. A continuous-time model incorporating universal series-parallel stator winding connection and radial permanent magnet fluxes is developed in the stator variables and transformed into the rotor reference frame, including also the electromagnetic torque. The transformed model undergoes discretization using the matrix exponential-based technique, wherein the electrical angular velocity and angle are considered time-varying parameters. The resulting model is subsequently expanded to consider the motor connection resistance via perturbation techniques. In the laboratory experiments, we validate the dynamical properties of the derived model by comparing its outputs with the experimental data and waveforms generated by the forward Euler-based discrete-time approximation.

关键词

eess.SY

相关论文

查看 OTHER 分类全部论文