Title :
Robust control of permanent magnet synchronous motors
Author :
Zhenhua Deng ; Xiaohong Nian
Author_Institution :
Central South Univ., Changsha, China
Abstract :
In this paper, permanent magnet synchronous motors (PMSMs) are investigated. According to the feature of PMSMs, a novel state equation of PMSMs is obtained by choosing suitable state variables. Based on the state equation, robust controllers are designed via interval matrix and PI control idea. In terms of bilinear matrix inequations, sufficient conditions for the existence of the robust controller are derived. In order to reduce the conservation and the dependence on parameter, the control inputs of PMSMs are divided into two parts, a feedforward control input and a feedback control input, and relevant sufficient conditions for the existence of the controller are obtained. Because of the suitable choice of state variables, the proposed control strategies can cope with the load uncertainty and have robustness for disturbance. Finally, simulations are carried out via Matlab/Simulink soft to verify the effectiveness of the proposed control strategies. The performance of the proposed control strategies are demonstrated by the simulation results.
Keywords :
PI control; control system synthesis; feedback; feedforward; machine control; matrix algebra; permanent magnet motors; robust control; synchronous motors; Matlab; PI control; PMSM; Simulink; bilinear matrix inequations; feedback control input; feedforward control input; interval matrix; load uncertainty; permanent magnet synchronous motor; robust control; state equation; state variables; Feedforward neural networks; Lyapunov methods; Mathematical model; Permanent magnet motors; Robust control; Robustness; Symmetric matrices; Bilinear matrix inequality (BMI); interval matrix; permanent magnet synchronous motor (PMSM); robust control;
Journal_Title :
Automatica Sinica, IEEE/CAA Journal of
DOI :
10.1109/JAS.2015.7081653