Parallel inverter control method based on adaptive parameters

Author:

Liu Chun1,Ding Shichuan2ORCID,Wu Zhongdong2,Guo Xiaoxuan3,Li Jiangwei4

Affiliation:

1. School of Advanced Manufacturing Engineering Hefei University Hefei China

2. School of Electrical Engineering and Automation Anhui University Hefei China

3. Electric Power Research Institute of Guangxi Power Grid Co., Ltd Nanning China

4. Nanning Power Supply Bureau of Guangxi Power Grid Co., Ltd Nanning China

Abstract

AbstractIn the inverter parallel system, due to the uncertainty of the working environment, the output voltage cannot meet the requirements, and the power distribution accuracy by the traditional droop control method is low. To increase the control accuracy of the output voltage of the inverter parallel system and improve the power distribution accuracy between parallel modules, this paper proposes a parallel inverter control method based on adaptive parameters. This method is improved on the basis of traditional P‐V droop control, and an adaptive parameter control method is implemented by the Lyapunov function, which can effectively improve the control accuracy of the output voltage and ensure that the output voltage remains within a certain constraint range under any load conditions. In order to further improve the output voltage control accuracy, the adaptive parameter control method is adopted. The parameter optimization strategy was deduced, and the steady‐state and dynamic control performances were significantly improved. Simulation and experimental results verify the effectiveness of the proposed control method.

Funder

National Natural Science Foundation of China

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

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