Title :
An exact discrete-time model considering dead-time nonlinearity for an H-bridge grid-connected inverter
Author :
Ruiliang Xie ; Xiang Hao ; Xu Yang ; Wenjie Chen ; Lang Huang ; Chao Wang
Author_Institution :
State Key Lab. of Electr. Insulation & Power Equip., Xi´an Jiaotong Univ., Xi´an, China
Abstract :
With the development of the renewable energy, grid-connected H-bridge inverter plays a more important role than ever. However, the dead-time and the zero crossing clamping (ZCC) effect caused by dead-time can cause THD problem. As a consequence, more and more researches have focused on this issue. Most of the researches use the harmonics to replace the effect of dead-time, which ignores ZCC effect. Some other researches use the average current to distinguish the ZCC effect, which is not accurate enough. This paper analyzes the whole changing process of inductor current ripples during power cycle and a complete discrete-time model of the H-bridge grid-connected inverter with dead-time is established. On the basis of the model, the analysis of dynamic behavior is carried out, the result of which shows that the length of dead-time can cause nonlinear phenomenon and reduces the stability region of the controller parameters. Besides, this model is also useful to the nonlinearity compensation of the system.
Keywords :
control nonlinearities; discrete time systems; harmonic distortion; inductors; invertors; stability; H-bridge grid-connected inverter; ZCC effect; controller parameters; dead-time nonlinearity; discrete-time model; inductor current ripples; nonlinearity compensation; stability region; total harmonic distortion; zero crossing clamping effect; Analytical models; Harmonic analysis; Inductors; Integrated circuits; Power system stability; Switches;
Conference_Titel :
Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE-ASIA), 2014 International
Conference_Location :
Hiroshima
DOI :
10.1109/IPEC.2014.6870102