Title :
Finite Control-Set Model Predictive Control (FCS-MPC) of Nested Neutral Point-Clamped (NNPC) Converter
Author :
Narimani, Mehdi ; Bin Wu ; Yaramasu, Venkata ; Zhongyuan Cheng ; Zargari, Navid Reza
Author_Institution :
Dept. of Electr. & Comput. Eng., Ryerson Univ., Toronto, ON, Canada
Abstract :
This paper proposes a model predictive control (MPC) strategy for a nested neutral point-clamped (NNPC) converter to control output currents and voltages of flying capacitors. The NNPC converter is a four-level converter topology for medium-voltage applications with interesting properties such as operating over a wide range of voltages (2.4-7.2 KV) without the need for connecting power semiconductor in series, high quality output voltage, less number of components compared to other classical four-level topologies. A discrete-time model of the converter is presented and all the control objectives are formulated in terms of the switching states. During each sampling interval, the predicted variables are assessed by the cost function and the best switching state which gives minimum value for the cost function is selected and applied to the converter gating terminals. The performances of the NNPC converter and predictive control scheme are verified through MATLAB/Simulink simulations and their feasibility is evaluated experimentally.
Keywords :
DC-AC power convertors; discrete time systems; electric current control; power capacitors; predictive control; switching convertors; voltage control; DC-AC power conversion; FCS-MPC; MATLAB simulation; NNPC converter; Simulink simulation; converter gating terminals; cost function; discrete-time model; finite control-set model predictive control scheme; flying capacitors; four-level converter topology; medium-voltage applications; nested neutral point-clamped converter; output current control; output voltage control; predicted variable assessment; sampling interval; switching states; Capacitors; Cost function; Load modeling; Predictive control; Switches; Voltage control; Voltage measurement; DC–AC power conversion; DC???AC power conversion; Multilevel converter; finite control-set model predictive control (FCS-MPC); multilevel converter;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2015.2396033