Journal of Electrical Engineering ›› 2019, Vol. 14 ›› Issue (1): 52-60.doi: 10.11985/2019.01.010

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Magnetic Integrated Staggered Parallel High Gain Converter with LCL Voltage Doubling Unit

LI Hongzhu1,SHI Qingchen1,LIU Yan1,LI Hongfan2   

  1. 1. Faculty of Electrical and Control Engineering,Liaoning Technical University, Huludao 125105 China
    2. Sanya Institute of Technology, Sanya 572022 China
  • Received:2019-01-01 Online:2019-03-25 Published:2019-11-01

Abstract:

Aiming at the demand of grid-connected power generation of new energy such as photovoltaic, a magnetic integrated staggered parallel high-gain DC converter is proposed based on LCL double pressure unit. The traditional staggered parallel Boost converter is improved by replacing the energy storage inductance with LCL double pressure unit to increase the voltage gain, adding the three-level capacitance to reduce the voltage stress of the switch tube at the output end of the traditional converter, and reducing the magnetic integration of the inductor in the converter to reduce the volume of the converter. The input and output lines of the converter are improved as well as the dynamic performance, and the power density and conversion efficiency of the converter are improved. The main working waveforms of the converter and the equivalent circuit diagram of each mode are given. The voltage gain of the converter, the equivalent steady-state inductance of the converter and the transient equivalent inductance expression are deduced. At the same time, the design criterion of the coupling degree of the converter magnetic parts is given. It is verified that the correctness of the theory through simulation and experiment.

Key words: DC converter, LCL voltage doubler unit, magnetic integration, high gain, current ripple

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