A platform for research: civil engineering, architecture and urbanism
Design and Control of a Photovoltaic Distribution System Based on Modular Buck-Boost Converters
The main contribution of this research is the design of a series hybrid topology for a photovoltaic distribution system using Buck-Boost converter modules. This design incorporates a maximum power point tracking (MPPT) algorithm based on the perturb and observe method, linear PI controllers, and an energy management algorithm. The controllers' design is validated through simulation using PSIM and SISOTOOL/MATLAB. This work aims to achieve active power-sharing in the AC grid through a control loop implemented with a three-phase inverter. The validation of the topology and controller design demonstrates tracking and robustness in four test scenarios for the state variables in microgrids: constant and variable irradiance conditions, auxiliary storage device (ASD) protection and control loops, and power-sharing with the AC grid, while considering the DC system dynamics.
Design and Control of a Photovoltaic Distribution System Based on Modular Buck-Boost Converters
The main contribution of this research is the design of a series hybrid topology for a photovoltaic distribution system using Buck-Boost converter modules. This design incorporates a maximum power point tracking (MPPT) algorithm based on the perturb and observe method, linear PI controllers, and an energy management algorithm. The controllers' design is validated through simulation using PSIM and SISOTOOL/MATLAB. This work aims to achieve active power-sharing in the AC grid through a control loop implemented with a three-phase inverter. The validation of the topology and controller design demonstrates tracking and robustness in four test scenarios for the state variables in microgrids: constant and variable irradiance conditions, auxiliary storage device (ASD) protection and control loops, and power-sharing with the AC grid, while considering the DC system dynamics.
Design and Control of a Photovoltaic Distribution System Based on Modular Buck-Boost Converters
Harrynson Ramírez-Murillo (author) / Carlos Andrés Torres-Pinzón (author) / José Fabián Salazar-Cáceres (author) / Valentina Vera-Saldaña (author) / Carlos Javier Mojica-Casallas (author)
2023
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under CC BY-SA 1.0
British Library Online Contents | 2018
|British Library Online Contents | 2018
|A New Model Predictive Control Method for Buck-Boost Inverter-Based Photovoltaic Systems
DOAJ | 2022
|Application of modified classical numerical methods for DMPPT on Buck and Boost converters
British Library Online Contents | 2018
|Design of Type III Fuzzy Controller for Buck/Boost Converter
Springer Verlag | 2024
|