Title :
Explicit model predictive control with disturbance observer for grid-connected voltage source power converters
Author :
Dirscherl, C. ; Hackl, C.M. ; Schechner, K.
Abstract :
Explicit model predictive control with disturbance observer is discussed for grid-connected voltage source power converters. Control objectives are set-point tracking of the DC-link voltage and reference tracking of the reactive power exchanged with the grid under unknown disturbances (load power). Controller and observer design are based on a linearized multi-input multi-output (MIMO) system of the DC-link dynamics with underlying current control-loops. The obstacle in DC-link voltage control is the possible non-minimum phase behavior in certain operation points which requires sufficiently large prediction horizons. Therefore, an explicit solution (control law) for the model predictive controller is derived to make a realtime implementation feasible for arbitrary prediction horizons. For the disturbance observer, it is shown that the observation (estimation) error is bounded. Simulation results illustrate control and observer performance.
Keywords :
MIMO systems; electric current control; power convertors; predictive control; reactive power; voltage control; DC-link voltage control; MIMO system; current control-loop; disturbance observer; explicit model predictive control; grid-connected voltage source power converter; linearized multi-input multi-output system; load power; nonminimum phase behavior; observation error; reactive power; reference tracking; Load modeling; Observability; Observers; Predictive models; Radio frequency; Reactive power; Voltage control;
Conference_Titel :
Industrial Technology (ICIT), 2015 IEEE International Conference on
Conference_Location :
Seville
DOI :
10.1109/ICIT.2015.7125228