Please use this identifier to cite or link to this item: http://repositorio.ufpso.edu.co/jspui/handle/123456789/3507
Title: PID Control System Applied to a Hybrid Electric Power Generation System with Hydrogen
Authors: Espinel-Blanco, Edwin
Romero Garcia, Gonzalo
Florez-solano, Eder
Keywords: PID Control System Applied, Hybrid Electric Power, Generation System, Hydrogen
Issue Date: Jul-2020
Publisher: Dr. Srinivasan Alavandar
Citation: Blanco, Edwin & Garcia, Gonzalo & Solano, Eder. (2020). PID Control System Applied to a Hybrid Electric Power Generation System with Hydrogen. International Review of Automatic Control. 13. 182-190. 10.15866/ireaco.v13i4.18778.
Series/Report no.: INGAP;ART055
Abstract: In this study, the capacity of two PID controllers (classic and adaptive) is evaluated to maintain the electric power of a Hybrid Electric Power Generation System (HEPGS), which is formed by a wind turbine, a photovoltaic module and a fuel cell. The addition of the fuel cell allows providing mainly the missing energy when fluctuations occur in environmental conditions that significantly reduce wind and/or solar energy. The HEPGS system installed in the Colombian Caribbean region demonstrates that 36 W and 72 W power generation is possible through the photovoltaic module and the wind turbine. Through simulations and analyses carried out in SIMULINK™, it has been found out that the adaptive PID controller shows a better reduction in the disturbance of the electrical parameters of the HEPGS compared to the classic control. This is reflected in the lower deviation of the voltage and current obtained in the HEPGS when the adaptive control is used. The performance analysis of this type of controller allows stabilizing the HEPGS output configuration for domain variations of up to 25%. This guarantees the use of hybrid energy systems to supply an electric power independent of environmental conditions continuously.
URI: http://repositorio.ufpso.edu.co/jspui/handle/123456789/3507
ISSN: 1974-6059
Appears in Collections:Artículos

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