Skip to main content

Model Predictive Control for an Active Magnetic Bearing System

مؤلف البحث
A Morsi, SM Ahmed, AM Mohamed, HS Abbas
المشارك في البحث
سنة البحث
2020
مجلة البحث
2020 IEEE 7th International Conference on Industrial Engineering and Applications (ICIEA)
الناشر
NULL
عدد البحث
NULL
تصنيف البحث
3
صفحات البحث
NULL
موقع البحث
NULL
ملخص البحث

Active magnetic bearing (AMB) systems have attracted much attention in the high speed rotating machinery industry. This paper presents an application of discrete-time model predictive control (MPC) subject to input/states constraints to control an AMB system based on linear time-invariant (LTI) model. The main control objectives are to levitate the rotor shaft of the AMB system while tracking a reference trajectory and to reject possible disturbances without violating the input and state constraints. A nonlinear (NL) model of the AMB system is considered; at each sampling instant, a finite horizon MPC problem is solved to compute the optimal control input. The performance and the efficiency of the proposed MPC is validated via simulation and comparison with another classical PID controller.