Bidirectional CLLC Resonant Converter Design for Photovoltaic Microinverters with Li-Ion Batteries
Journal
2021 IEEE International Future Energy Electronics Conference, IFEEC 2021
Date Issued
2021
Author(s)
Abstract
The integration of storage into solar photovoltaic systems helps address the increasing electricity demands and the intermittent nature of renewable energy sources. Since photovoltaics (PV) are easily affected by environmental conditions,PV microinverters with integrated batteries are one solution to achieve a more reliable power output to the grid. However,this results in a more complex microinverter system design which requires an additional dc-dc converter to charge and discharge the battery. In this system,proper power balancing control is needed to transfer energy to and from the battery while ensuring the dc link voltage stays within an acceptable voltage to properly provide power to the grid. This research proposes a system control method of a bidirectional CLLC resonant converter to provide a rapid transition between the batteries' discharging and charging modes in the integrated microinverter. Also,the voltage gain of the resonant tank of the symmetric bidirectional CLLC converter using first harmonic approximation analysis is discussed. Simulation results in PSIM simulation software verify the validity of the proposed control method. © 2021 IEEE.
Subjects
CLLC converter; dc link voltage; integrated microinverter; Li-ion batteries; photovoltaic systems
Other Subjects
Computer software; DC-DC converters; Electric power system control; Electric power transmission networks; Renewable energy resources; Solar cells; Solar power generation; CLLC converter; Control methods; Converter design; DC-link voltages; Integrated microinverte; Micro inverters; Photovoltaic systems; Photovoltaics; Resonant converters; Solar photovoltaic system; Lithium-ion batteries
Type
conference paper