Estudio de prefactibilidad para la implementación de electrolineras y su impacto en la red eléctrica residencial

This project focuses on the study and pre-feasibility analysis to implement charging points for electric cars in Feeder #03 Latacunga Sur of the Distribution System of Empresa Eléctrica Cotopaxi S.A. This process began with the collection of data and distribution planning criteria in which the datab...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
1. Verfasser: Satuquinga Sánchez, Edwin David (author)
Weitere Verfasser: Tenorio Chango, Carlos Moisés (author)
Format: bachelorThesis
Sprache:spa
Veröffentlicht: 2022
Schlagworte:
Online Zugang:http://repositorio.utc.edu.ec/handle/27000/9312
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:This project focuses on the study and pre-feasibility analysis to implement charging points for electric cars in Feeder #03 Latacunga Sur of the Distribution System of Empresa Eléctrica Cotopaxi S.A. This process began with the collection of data and distribution planning criteria in which the database provided by the Cotopaxi Provincial Electric Company was used, and with the help of the CYMDIST distribution system analysis software, it was sought to diagnose the current state of the system and evaluate the characteristics of the Feeder. The data analysis determined 24 transformers connected to the network with a percentage greater than 100% of its chargeability, which represents an overload state. The methodology includes the realization of the demand projection and studies through the simulation of power flows in the current situation to a demand projection to 2030 with a growth of 4.8% per year; in addition, the random method was applied for the 109 charging points for electric cars that will be implemented by the different users belonging to the Feeder. Finally, the performance of the transformers was studied, based on the insertion of the load projection using the CYMDIST software, managing to identify the 37 overloaded transformers in the year 2030 and then be able to propose a repowering in the electrical distribution system to have a reliable system that is prepared for the different demands of consumers.