Electrical drives fed by Multilevel Inverters (MIs) are of considerable interest for traction and e-mobility applications. In detail, Cascaded H-Bridge Multilevel Inverter (CHBMI) is a promising solution for electrical drive optimization purposes in terms of efficiency, safety, integration and flexible use of energy sources. The aim of this paper is the experimental implementation of the field-oriented control strategy of Interior Permanent Magnet Synchronous Machine (IPMSM) fed by CHBMI by use of NI-SOM sbrRIO-9651 FPGA controller. This FPGA controller can be programmable in the LabVIEW programming environment with the consequent benefits of graphical programming. The paper address the acquisition of mechanical and electrical quantities necessary for closed-loop control, such as speed, position and currents, the development of their condition circuits, the control software implementation and the experimental validation. © 2022 IEEE.
Di Tommaso A.O., Miceli R., Nevoloso C., Scaglione G., Schettino G., Cecati C., et al. (2022). Field Oriented Control of IPMSM Fed by Multilevel Cascaded H-Bridges Inverter with NI-SOM sbRIO-9651 FPGA controller. In Field Oriented Control of IPMSM Fed by Multilevel Cascaded H-Bridges Inverter with NI-SOM sbRIO-9651 FPGA controller (pp. 88-93). Institute of Electrical and Electronics Engineers Inc. [10.1109/SPEEDAM53979.2022.9841978].
Field Oriented Control of IPMSM Fed by Multilevel Cascaded H-Bridges Inverter with NI-SOM sbRIO-9651 FPGA controller
Di Tommaso A. O.;Miceli R.;Nevoloso C.;Scaglione G.;Schettino G.;
2022-01-01
Abstract
Electrical drives fed by Multilevel Inverters (MIs) are of considerable interest for traction and e-mobility applications. In detail, Cascaded H-Bridge Multilevel Inverter (CHBMI) is a promising solution for electrical drive optimization purposes in terms of efficiency, safety, integration and flexible use of energy sources. The aim of this paper is the experimental implementation of the field-oriented control strategy of Interior Permanent Magnet Synchronous Machine (IPMSM) fed by CHBMI by use of NI-SOM sbrRIO-9651 FPGA controller. This FPGA controller can be programmable in the LabVIEW programming environment with the consequent benefits of graphical programming. The paper address the acquisition of mechanical and electrical quantities necessary for closed-loop control, such as speed, position and currents, the development of their condition circuits, the control software implementation and the experimental validation. © 2022 IEEE.File | Dimensione | Formato | |
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