Title :
A simple and robust digital current control scheme of a permanent magnet synchronous motor using time delay control approach
Author :
Kim, Kyeong-Hwa ; Youn, Myung-Joong
Author_Institution :
A/C R&D Group, Samsung Electron. Co., Kyungki, South Korea
Abstract :
A simple and robust digital current control technique of a permanent magnet (PM) synchronous motor using a time delay control approach is presented. Among the various current control schemes for a voltage source inverter fed PM synchronous motor drive, the predictive control is known to give a superior performance. This control technique, however, requires the full knowledge of machine parameters and operating conditions, and gives an unsatisfactory response under the parameter mismatch between the motor and controller. To overcome such a limitation, the disturbances caused by the parameter variations is estimated by using a time delay control approach and used for the computation of the reference voltages by a simple feedforward control. Thus, the steady-state control performance can be significantly improved in an extremely simple manner, while retaining the good characteristics of the predictive control such as the good transient response and stable inverter operation. The proposed control scheme is implemented on a PM synchronous motor using the software of DSP TMS320C30 and the effectiveness is verified through the comparative simulations and experiments
Keywords :
digital control; digital signal processing chips; electric current control; feedforward; invertors; machine control; parameter estimation; permanent magnet motors; predictive control; robust control; synchronous motor drives; transient response; DSP TMS320C30; PM synchronous motor; feedforward control; good transient response; machine parameters; operating conditions; parameter mismatch; permanent magnet synchronous motor; predictive control; reference voltages; robust digital current control; stable inverter operation; steady-state control performance; time delay control; voltage source inverter; Current control; Delay effects; Delay estimation; Inverters; Parameter estimation; Predictive control; Robust control; Steady-state; Synchronous motors; Voltage control;
Conference_Titel :
Industry Applications Conference, 2000. Conference Record of the 2000 IEEE
Conference_Location :
Rome
Print_ISBN :
0-7803-6401-5
DOI :
10.1109/IAS.2000.882108