Title :
Speed Sensorless and Sensor-Fault Tolerant Optimal PI Regulator for Networked DC Motor System With Unknown Time-Delay and Packet Dropout
Author :
Ahmadi, Ali-Akbar ; Salmasi, Farzad Rajaei ; Noori-Manzar, Mojtaba ; Najafabadi, Tooraj Abbasian
Author_Institution :
Sch. of Electr. & Comput. Eng., Univ. of Tehran, Tehran, Iran
Abstract :
Sensorless and sensor-fault-resilient control of a networked dc motor system (NDCMS) with an optimal integral-square-error proportional-integral (PI) controller is considered, while network-induced delays and packet dropouts are taken into account. A sliding-mode observer is developed to estimate rotor speed and unknown load torque for the networked system. Then, a PI controller is designed such that the overall NDCMS with complete or partial sensor failure is stabilized and a linear quadratic cost function is sufficiently minimized. Optimal controller parameters are determined by solving bilinear matrix inequalities. The numerical and experimental tests are performed to evaluate the feasibility and applicability of the networked sensorless or sensor-fault-tolerant controller. The results show good performance in both estimation and control objectives.
Keywords :
PI control; delays; linear matrix inequalities; networked control systems; optimal control; rotors; sensorless machine control; variable structure systems; velocity control; PI controller; bilinear matrix inequalities; linear quadratic cost function; load torque; network-induced delays; networked DC motor system; optimal controller parameters; optimal integral-square-error proportional-integral controller; packet dropout; rotor speed; sensor failure; sensor-fault tolerant optimal PI regulator; sensor-fault-resilient control; sensorless control; sliding-mode observer; speed sensorless regulator; time-delay; Control systems; Cost function; DC motors; Delays; Estimation error; Observers; Torque; Fault tolerant; linear quadratic regulator (LQR); network-induced delay; networked control systems (NCSs); packet dropout; proportional–integral (PI) controller; sliding-mode observer; speed sensorless;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2013.2253073