Author:
Wang Dangshu,Yi Jiaan,Song Luwen,Deng Xuan,Wang Xinxia,Dong Zhen
Abstract
Purpose
This paper aims to solve the problems of large hard switching loss and unclear resonant parameter design in the existing inverter power supply topology.
Design/methodology/approach
This paper proposes a simple and reliable two-stage isolated inverter composed of series quasi-resonant push-pull and external freewheeling diode full-bridge inverter. The power supply topology is analyzed, the topology mode is analyzed, the mathematical model of the converter is established and the DC gain of the converter is deduced. The relationship between the load and the output gain of the resonant tank is presented, a new resonant parameter design method is proposed, and the parameter design of the resonant element of the converter is clarified.
Findings
The resonant components of the converter are designed according to the proposed resonant parameter design method, and the correctness of the method is verified by simulation and the development and testing of a 500 W experimental prototype. After experimental tests, the peak efficiency of the experimental prototype can reach 94%. Because the experimental prototype achieves soft switching, the heat generation of the switch is greatly reduced, so the heavy heat sink is removed, and the volume is reduced by about 30% compared with the traditional power supply, and the total harmonic distortion of the output voltage is about 2%.
Originality/value
The feasibility of the scheme is verified by experiments, which is of great significance for improving the efficiency of the inverter power supply and parameter optimization.
Subject
Electrical and Electronic Engineering,Industrial and Manufacturing Engineering
Reference23 articles.
1. ZCS-PWM interleaved boost converter using resonance-clamp auxiliary circuit;IET Power Electronics,2017
2. Research and design of high-power military vehicle-mounted inverter power supply,2019
3. Analysis and design of a current-fed zero-voltage-switching and zero-current-switching CL-resonant push-pull dc-dc converter;IET Power Electronics,2009
4. Research on key technologies of high frequency power electronic resonant converters,2019
5. Research on Single-Phase Two-Stage isolated inverter power supply,2018
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