The 10th International Conference on Next Generation Computing 2024 (2024.11)바로가기
페이지
pp.279-280
저자
Dong-ok Kim, Jong-sil Kim, Heon Jeong, Seok-gu Kang, Myung-jin Kim
언어
영어(ENG)
URL
https://www.earticle.net/Article/A468861
원문정보
초록
영어
This paper proposes an algorithm to optimize a solar module optimizer's efficiency using the buck-boost functionality of a full-bridge converter. Given that the electrical characteristics of solar modules can vary significantly based on environmental conditions, it is necessary to have the capability to individually adjust each module's voltage and current. A fullbridge converter allows dynamic adjustment of input voltage to maintain optimal power output for each module and optimize the overall current of the system when modules are connected in series. The proposed algorithm was verified through MATLAB/Simulink simulations, demonstrating that it can increase total power production by up to 20%. This research contributes to enhancing the performance of solar power generation systems under various environmental conditions. Future studies will involve actual hardware implementation to further validate the algorithm and explore the application of different maximum power point tracking (MPPT) methods.
목차
Abstract I. INTRODUCTION II. FULL-BRIDGE CONVERTERS III. ALGORITHM DESIGN Algorithm Objectives Algorithm Steps IV. IMPLEMENTATION AND SIMULATION V. CONCLUSION ACKNOWLEDGEMENT REFERENCES
키워드
Solar Module OptimizerFull-bridge converterDynamic adjustmentMaximum power point tracking (MPPT)
저자
Dong-ok Kim [ Jeonnam Techno Park Energy Center Director, Jeonnam, Korea ]
Jong-sil Kim [ CEO, Huintech Co., Ltd., Jeonnam, Korea ]
Heon Jeong [ Department of Fire Service Administration, Chodang University, Jelollanamdo, Republic of Korea ]
Seok-gu Kang [ Department of Fire Service Administration, Chodang University ]
Myung-jin Kim [ Department of Fire Service Administration, Chodang University ]