Analysis and control of single‐phase transformerless dual‐frequency grid‐connected inverter

Author:

Chen Zhigang12,Wang Yamei2ORCID,Yang Liyong2,Liu Shuo2,Tong Chaonan1,Lv Yongchao2

Affiliation:

1. School of Automation and Electrical Engineering University of Science and Technology Beijing Beijing China

2. College of Electrical and Control Engineering North China University of Technology Beijing China

Abstract

SummaryTo simplify the inverter topology and suppress the leakage current more effectively, a novel transformerless dual‐frequency grid‐connected inverter with a common direct current (DC) bus is proposed. The proposed inverter retains the advantages of the traditional dual‐frequency inverter such as high efficiency and absence of resonance. In the novel topology, the power unit adopts the highly efficient reliable inverter concept (HERIC) topology with a unipolar modulation strategy, and the auxiliary unit adopts the H‐bridge topology with a bipolar modulation strategy. It is verified that the circulating current between the two units can be eliminated in the proposed inverter. The sensitivity of the circulating current is discussed by considering the tolerance of the filter inductances. In the leakage current equivalent circuit, the DC bus of the power unit is connected to the grid through a low‐impedance branch in parallel with the parasitic capacitance. Therefore, the leakage current is effectively suppressed. Finally, the experimental results are provided to verify the performance of the inverter.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computer Science Applications,Electronic, Optical and Magnetic Materials

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