Title :
Efficient predictive current control technique for multilevel voltage source inverters
Author :
Perantzakis, G.S. ; Xepapas, F.H. ; Manias, S.N.
Author_Institution :
Dept. of Electr. & Comput. Eng., Nat. Tech. Univ. of Athens
Abstract :
In this paper a predictive current control technique for multilevel voltage source inverters (MVSI) is presented. The proposed method can be applied to any multilevel inverter for high-voltage high-power applications. Here, it is applied to a four-level neutral-point diode clamped voltage source inverter (NPDCVSI). The inverter is considered as a non-linear system with its thirty seven discrete space voltage vectors. The proposed controller predicts the load current for all voltage vectors generated by the inverter. The current error for each voltage vector is calculated and the vector that ensures the smallest value of current error is selected as the inverter voltage vector for the next sampling period. The method allows optimum reference current tracking for all operating conditions under low current harmonic distortion as a result of many voltage vectors that participate in the control process. Furthermore, the proposed control ensures fast dynamic response and decoupling effect between the load current components. Simulation and experimental results verify the effectiveness of the predictive current controller
Keywords :
dynamic response; electric current control; harmonic distortion; invertors; nonlinear control systems; predictive control; decoupling effect; discrete space voltage vectors; dynamic response; harmonic distortion; high-voltage high-power applications; multilevel voltage source inverters; neutral-point diode clamped voltage source inverter; nonlinear system; optimum reference current tracking; predictive current control technique; Current control; Electric current control; Harmonic distortion; Inverters; Predictive models; Sampling methods; Semiconductor diodes; Switches; Topology; Voltage control; Inverter Space Voltage Vector; Neutral Point Diode Clamped Multilevel Inverter; Predictive Current Control; Voltage Source Inverter;
Conference_Titel :
Power Electronics and Applications, 2005 European Conference on
Conference_Location :
Dresden
Print_ISBN :
90-75815-09-3
DOI :
10.1109/EPE.2005.219543