Tensor Product Alternatives for Nonlinear Field-Oriented Control of Induction Machines

Author:

Kuczmann Miklós1ORCID,Horváth Krisztián1ORCID

Affiliation:

1. Department of Power Electronics and E-Drives, Audi Hungaria Faculty of Vehicle Engineering, Széchenyi István University, H-9026 Győr, Hungary

Abstract

The paper presents a nonlinear field-oriented control technique based on the tensor product representation of the nonlinear induction machine model and the solvability of linear matrix inequalities. The nonlinear model has 32 quasi linear parameter-varying equivalent variants, and it is shown that only half of the models result in feasible controller. Two control goals are realized: torque control and speed control. The controller is a nonlinear state feedback controller completed by integral action. A new block diagram is investigated for speed control. The controller gains are designed by the solution of linear matrix inequalities to solve the Lyapunov inequality to obtain a stable and fast response and constraints on the control signal. The presented methods are verified and compared by simulations.

Publisher

MDPI AG

Reference50 articles.

1. Industrial drive systems. Current state and development trends;Dybkowski;Power Electron. Drives,2016

2. Automotive electric propulsion systems with reduced or no permanent magnets: An overview;Boldea;IEEE Trans. Ind. Electron.,2014

3. Direct torque control versus indirect field-oriented control of induction motors for electric vehicle applications;Aktas;Eng. Sci. Technol. Int. J.,2020

4. A critical review of advanced electric machines and control strategies for electric vehicles;Liu;Proc. IEEE,2021

5. Trzynadlowski, A. (1993). The Field Orientation Principle in Control of Induction Motors, Springer.

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