Oscar Cartagena, PhD

Computational Intelligence Researcher

Renewable Energies Integration in Electrification for Chilean Smartports—Challenges and Case Study


Journal article


Rafaella Canessa, Rodrigo Santibáñez, Constanza Ahumada, Patricio Mendoza-Araya, Oscar Cartagena, Doris Sáez
IEEE Access, vol. 13, 2025, pp. 94437 - 94452


Semantic Scholar DBLP DOI
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APA   Click to copy
Canessa, R., Santibáñez, R., Ahumada, C., Mendoza-Araya, P., Cartagena, O., & Sáez, D. (2025). Renewable Energies Integration in Electrification for Chilean Smartports—Challenges and Case Study. IEEE Access, 13, 94437–94452. https://doi.org/10.1109/ACCESS.2025.3574632


Chicago/Turabian   Click to copy
Canessa, Rafaella, Rodrigo Santibáñez, Constanza Ahumada, Patricio Mendoza-Araya, Oscar Cartagena, and Doris Sáez. “Renewable Energies Integration in Electrification for Chilean Smartports—Challenges and Case Study.” IEEE Access 13 (2025): 94437–94452.


MLA   Click to copy
Canessa, Rafaella, et al. “Renewable Energies Integration in Electrification for Chilean Smartports—Challenges and Case Study.” IEEE Access, vol. 13, 2025, pp. 94437–52, doi:10.1109/ACCESS.2025.3574632.


BibTeX   Click to copy

@article{rafaella2025a,
  title = {Renewable Energies Integration in Electrification for Chilean Smartports—Challenges and Case Study},
  year = {2025},
  journal = {IEEE Access},
  pages = {94437 - 94452},
  volume = {13},
  doi = {10.1109/ACCESS.2025.3574632},
  author = {Canessa, Rafaella and Santibáñez, Rodrigo and Ahumada, Constanza and Mendoza-Araya, Patricio and Cartagena, Oscar and Sáez, Doris}
}

Abstract

This paper analyses and discusses the environmental impact of integrating renewable energies in the operation of seaports in a context in which maritime activities are an essential contributor to global greenhouse gas emissions. The analysis performed in this work is structured as follows: first, the implementation of smartport microgrids is discussed as an important strategy to control seaports because its design facilitates the integration of different technologies such as cold ironing and distributed energy resources. In this context, properly integrating cold ironing and renewable energy technologies is essential to reducing pollution levels. Secondly, the main challenges of implementing these technologies are discussed, covering the economic, technical, and environmental aspects. Here, Chile’s lack of proper normative is an important problem that must be addressed to incentivise projects for sustainable smartport implementations. Finally, this work presents a case study where a smartport with cold ironing and renewable energy facilities is designed for the port in Puerto Montt, Chile. The simulation results show the effectiveness of the smartport strategy for reducing emissions and operational costs. Still, this strategy usually requires higher investments due to the inclusion of renewable energies.