Title :
Model-predictive control of grid-connected inverters for PV systems with flexible power regulation and switching frequency reduction
Author :
Jiefeng Hu ; Jianguo Zhu ; Dorrell, David G.
Author_Institution :
Fac. of Eng. & Inf. Technol., Univ. of Technol., Sydney, NSW, Australia
Abstract :
This paper presents a model-predictive direct power control (MPDPC) strategy for a grid-connected inverter used in a PV system. Thus is aimed at use in distributed generation. The controller uses a system model to predict the system behavior at each sampling instant. The voltage vector generating least power ripples will then be selected according to a cost function and applied during the next sampling period, thus flexible power regulation can be achieved. In addition, the influences of one-step delay in digital implementation is investigated and compensated using a model based prediction scheme. Furthermore, a switching frequency reduction algorithm is developed by adding a nonlinear constraint to the cost function, which is a significant advantage in higher-power applications. The effectiveness of the proposed MPC strategy was verified numerically by using MATLAB/Simulink, and validated experimentally using a laboratory prototype.
Keywords :
distributed power generation; frequency control; invertors; photovoltaic power systems; power control; power generation control; predictive control; MATLAB-Simulink; MPDPC strategy; PV system; cost function; digital implementation; distributed generation; flexible power regulation; grid-connected inverter; higher-power applications; laboratory prototype; model-predictive direct power control strategy; nonlinear constraint; one-step delay; power ripples; sampling period; switching frequency reduction algorithm; voltage vector; Cost function; Inverters; Reactive power; Switches; Switching frequency; Vectors;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2013 IEEE
Conference_Location :
Denver, CO
DOI :
10.1109/ECCE.2013.6646748