Title :
An improved simulation model of a brushless DC motor drive system for industrial applications
Author :
Guinee, R.A. ; Lyden, C.
Author_Institution :
Dept. of Electr. Eng., Cork Inst. of Technol., Ireland
Abstract :
An accurate and simplified model of a brushless DC motor drive (BLMD) system is presented as a simulation tool for performance related studies in industrial drive applications and for system identification in controller design. The model relies on the single Fourier series expression for pulsewidth modulation (PWM), which includes the effects of inverter dead time as a substantial part of the switching period T s, in the current control loop. This simplified approach obviates the need for very small time steps (~0.5% Ts), in the search of PWM edge transitions within a switching interval, for accurate simulation. Substantial improvement in simulation speed is achieved (up to fiftyfold) with a beneficial saving in computation (CPU) resources. Model integrity is validated when simulation results are checked against actual BLMD test data for coherence. Subsequent model simulations illustrate the effect of inverter delay on the reduction of generated torque and power transfer
Keywords :
DC motor drives; Fourier series; PWM invertors; brushless DC motors; electric current control; machine control; machine theory; PWM inverter; brushless DC motor drive system; controller design; current control loop; industrial applications; inverter dead time; inverter delay; model integrity validation; power transfer; pulsewidth modulation; simulation model; simulation speed improvement; single Fourier series expression; switching period; system identification; torque; Brushless DC motors; Computational modeling; Control system synthesis; Electrical equipment industry; Fourier series; Industrial control; Pulse inverters; Pulse width modulation; Pulse width modulation inverters; System identification;
Conference_Titel :
Electrotechnical Conference, 1998. MELECON 98., 9th Mediterranean
Conference_Location :
Tel-Aviv
Print_ISBN :
0-7803-3879-0
DOI :
10.1109/MELCON.1998.699425