Title :
Plug-in Direct-Flux Vector Control of PM Synchronous Machine Drives
Author :
Pellegrino, Gianmario ; Boazzo, Barbara ; Jahns, Thomas M.
Author_Institution :
Dept. of Energy, Politec. di Torino, Turin, Italy
Abstract :
A general-purpose control algorithm is proposed for permanent-magnet (PM) synchronous machine drives based on the principle of direct-flux vector control. The algorithm does not require regulator tuning, and it is tailored to different machines automatically via identification of the stator resistance and flux linkage tables. The model parameters are identified via a preliminary self-commissioning procedure that can be integrated into the standard drive firmware with no need for extra hardware or offline manipulation. The combination of the control and self-commissioning algorithms forms a “plug-in” controller, which pertains to a controller that is capable of exploiting the full drive capabilities with no prior knowledge of the PM machine in use. Experimental results are reported for two prototype concentrated-winding PM machines designed for traction applications, i.e., one with a surface-mounted PM rotor and another with an interior PM rotor.
Keywords :
machine vector control; magnetic flux; permanent magnet motors; rotors; stators; surface mount technology; synchronous motor drives; traction; PM synchronous machine drive; extra hardware; flux linkage table identification; interior PM rotor; offline manipulation; permanent magnet synchronous machine drive; plug-in controller; plug-in direct flux vector control; prototype concentrated winding PM machine design; self-commissioning algorithm; standard drive firmware; stator resistance identification; surface-mounted PM rotor; traction applications; Couplings; Inverters; Magnetic flux; Observers; Stators; Table lookup; Torque; Flux observer; PM-assisted synchronous reluctance motor; machine magnetic model; machine vector control; magnetic parameters; model-based control; motor inductances; motor parameter variations; permanent-magnet (PM) motors; proportional--integral (PI) control; synchronous motor drives;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2015.2420631