Title :
Fast Real-Time Constrained Predictive Current Control in Permanent Magnet Synchronous Machine-Based Automotive Traction Drives
Author :
Carpiuc, Sabin-Constantin ; Lazar, Corneliu
Author_Institution :
Dept. of Autom. Control & Appl. Inf., “Gheorghe Asachi” Tech. Univ. of Iasi, Iasi, Romania
Abstract :
The current control in permanent magnet synchronous machine (PMSM) drives is a challenging problem which has to deal with physical and real-time constraints. The goal of this paper is to provide a control solution that can deal effectively with these challenges. The objective is to adjust the stator voltages to obtain fast and monotonic transient current response while satisfying the existing constraints. To this end, using the PMSM model in the rotor coordinates, an explicit one-step ahead predictive control law which uses tools from Lyapunov theory is developed. First, a polytopic approximation of the quadratic constraints is used to reduce the complexity. Then, the optimization problem is reduced to a linear program. Furthermore, a piecewise affine explicit control law is obtained via multiparametric linear programming. As a consequence, the online computation of the control law is reduced to a point location problem yielding a fast control method suitable for real-time implementation. Second, the speed-dependent terms of the mathematical model are considered as disturbance. Then, a state and disturbance observer is designed using a quadratic Lyapunov function to guarantee asymptotic stability of the estimation error. Real-time results obtained in an industrial hardware-in-the-loop test-bench are reported and analyzed.
Keywords :
Lyapunov methods; automobiles; electric current control; linear programming; observers; permanent magnet machines; predictive control; real-time systems; stability; stators; synchronous machines; traction; transient response; Lyapunov theory; PMSM drives; PMSM model; asymptotic stability; automotive traction drives; disturbance observer; fast real-time constrained predictive current control; monotonic transient current response; multiparametric linear programming; one-step ahead predictive control law; permanent magnet synchronous machine; piecewise affine explicit control law; polytopic approximation; quadratic Lyapunov function; quadratic constraints; rotor coordinates; stator voltages; Linear programming; Optimization; Permanent magnet machines; Predictive control; State-space methods; Linear programming; Permanent magnet machines; Predictive control; State space methods; permanent magnet machines; predictive control; state space methods;
Journal_Title :
Transportation Electrification, IEEE Transactions on
DOI :
10.1109/TTE.2015.2482223