Small-Signal Modeling and Analysis of Grid-Connected Inverter with Power Differential Droop Control

Author:

Chen Xin1ORCID,Zhang Changhua1,Huang Qi1,Ofori-Oduro Mark1

Affiliation:

1. School of Energy Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China

Abstract

The conventional voltage and frequency droop control strategy in grid-connected inverter suffers a major setback in the presence of disturbance by producing oscillations. Adding a power differential term in droop controller is an effective way to address such drawback. In this paper, grid-connected inverter’s small-signal models of the conventional droop control and the power differential droop control are established. The eigenvalues of the models are then determined by system matrix. The eigenvalues analysis is presented which helps in identifying the relationship between the system stability and controller parameters. It is concluded that the damping ratio of dominant low-frequency eigenvalues increased and the oscillation caused by the disturbance is suppressed when a power differential term is added to the droop control method. The MATLAB/Simulink models of grid-connected inverter with both control strategies are also established to validate the results of small-signal analysis.

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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