A Review of Non-Isolated High-Gain Y-Source Converters Topologies

Author:

Wang Hao1,Wang Panbao1ORCID,Yan Enpeng1,Wang Wei1,Xu Dianguo1

Affiliation:

1. School of Electrical Engineering and Automation, Harbin Institute of Technology, Harbin 150001, China

Abstract

Due to the low voltage and high randomness of renewable energy, high-performance grid-connected converters are needed. With the advantages of a high boost ratio, flexible design, and simple control, the Y-Source Converter (YSC) is widely concerned. However, there are a few drawbacks to the traditional Y-source converter, including significant switching stress, voltage voltage overshoot, and discontinuous current. To solve the problems above, a series of improved topologies are proposed. Moreover, the voltage gain, current ripple, and soft switching characteristics have also been optimized. So far, the existing literature lacks the collation and comparison of different topologies of Y-source, as well as the analysis of its evolution process. Therefore, this paper provides a comprehensive overview of Y-source converters’ topologies. According to their features and applications, different topologies are classified and described, leading to guidance for the selection of YSCs under different scenarios. Meanwhile, the working principle, evolution process, and vital issues are analyzed. By revealing their deductive rules, valuable suggestions are provided for the future development of YSCs.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Heilongjiang Province

Publisher

MDPI AG

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