Modelo de gestión de seguridad energética en defensa: revisión 2020 al 2025 y propuesta de MGSE para el Ejército del Perú

Authors

  • Franklin Edison HUAYÁN MONZÓN Instituto Científico y Tecnológico del Ejército - ORCID: 0000-0001-6459-5160 Author
  • Marco Antonio AGUIRRE RIVERA 2Instituto Científico y Tecnológico del Ejército - ORCID: 0000-0001-9060-0736 Author

DOI:

https://doi.org/10.48082/espacios-a26v47n01i08

Keywords:

energy security, microgrids, resilience, defense, tecnological management

Abstract

This article presents a focused 2020–2025 review on energy security in defense and proposes an Energy Security Management Model (MGSE) for the Peruvian Army. The model integrates governance (ISO 50001), microgrid architecture with BESS, OT/ICS cybersecurity, and techno-economic assessment (LCOE, PPAs). Expert validation (n = 7) shows exploratory consensus (CV ≤ 0.20) and identifies economic sustainability as the priority for improvement. A 2025–2030 roadmap is outlined for pilots and institutional scaling.

References

Ameresco, Inc. (2024). JFTB Los Alamitos, CA: Microgrid project overview. Ameresco. (2024, mayo). JFTB Los Alamitos, CA: Microgrid project overview. https://www.ameresco.com/wp-content/uploads/2024/05/jftb-los-alamitos-ca.pdf

Australian Gov. (2024). Defence industry development strategy . Department of Defence.

Bumbuc, Ștefania. (2022). On the Use of Qualitative Research Methodology in the Military Organization. International Conference KNOWLEDGE-BASED ORGANIZATION, 28(2), 134–139. https://doi.org/10.2478/kbo-2022-0061

Department of Defence. (2023). National Defense Science & Technology Strategy.

Escalante, D. (2023). La seguridad energética de Centroamérica: propuesta para una estimación abarcadora. https://www.cepal.org/es/publicaciones/48793-revista-cepal-139

European Union. (2024). Commission Recommendation (EU) 2024/2002 of 24 July 2024 setting out guidelines for the interpretation of Article 11 of Directive (EU) 2023/1791 of the European Parliament and of the Council as regards energy management systems and energy audits (notified under document C(2024) 5155). http://data.europa.eu/eli/reco/2024/2002/oj1/18http://data.europa.eu/eli/dir/2012/27/oj

Furqan, M., & Boudet, H. (2025). Nuances of valuing resilience from microgrids. Renewable and Sustainable Energy Reviews, 210. https://doi.org/10.1016/j.rser.2024.115236

Gitelman, L., Magaril, E., & Kozhevnikov, M. (2023). Energy Security: New Threats and Solutions. In Energies (Vol. 16, Issue 6). MDPI. https://doi.org/10.3390/en16062869

HM Government. (2021). Defence and Security Industrial Strategy.

International Energy Agency. (2021). World Energy Outlook 2021 Resumen ejecutivo. www.iea.org/weo

International Energy Agency. (2022). World Energy Outlook. www.iea.org/t&c/

International Energy Agency. (2023). World Energy Outlook 2023. www.iea.org/terms

Lawrenson, T. (2024). The Impact of the European Defence Fund on Cooperation with Third-country Entities. https://www.iiss.org/globalassets/media-library---content--migration/files/research-papers/2024/10/euro-defence/iiss_the-impact-of-the-european-defence-fund-on-cooperation-with-third-country_24102024.pdf?

Lella, I. (2023). THREAT LANDSCAPE. ENISA. https://doi.org/10.2824/782573

Lella, I. (2024). THREAT LANDSCAPE. ENISA. https://doi.org/10.2824/0710888

Ministerio de Defensa de España. (2021). Estrategia de Tecnología e Innovación para la Defensa ETID SECRETARÍA DE ESTADO DE DEFENSA Dirección General de Armamento y Material. https://publicaciones.defensa.gob.es/

Mirletz, B., Vimmerstedt, L., Akar, S., Avery, G., Stright, D., Akindipe, D., Augustine, C., Beiter, P., Cohen, S., Cole, W., Duffy, P., Eberle, A., Feldman, D., Kurup, P., Mulas Hernando, D., Ramasamy, V., Roberts, O., Rosenlieb, E., Schleifer, A., … Oladosu, G. (2023). Annual Technology Baseline: The 2023 Electricity Update. https://research-hub.nrel.gov/en/publications/annual-technology-baseline-the-2023-electricity-update/

Narang, D., Gonzalez, S., Ingram, M., & Ropp, M. (2022). Overview of Functional Technical Requirements for Intentional Islands. www.nrel.gov/publications.

NATO. (2024). ResIilence Symposium. https://www.act.nato.int/wp-content/uploads/2025/09/NATO-Resilience-Symposium-2024-Report.pdf

NQA. (2018). Guía ISO 50001:2018 ENERGY MANAGEMENT SYSTEM IMPLEMENTATION GUIDE. NQA. (2018). Guía ISO 50001: Sistema de gestión de la energía. National Quality Assurance. https://www.nqa.com/en-gb/resources/guides/iso-50001-energy-management

Pouraltafi‐kheljan, S., Ugur, M., Bozulu, E., Çalişkan, B. C., Keysan, O., & Gol, M. (2021). Centralized microgrid control system in compliance with ieee 2030.7 standard based on an advanced field unit. Energies, 14(21). https://doi.org/10.3390/en14217381

Tamasiga, P., Onyeaka, H., Altaghlibi, M., Bakwena, M., & Ouassou, E. houssin. (2024). Empowering communities beyond wires: Renewable energy microgrids and the impacts on energy poverty and socio-economic outcomes. In Energy Reports (Vol. 12, pp. 4475–4488). Elsevier Ltd. https://doi.org/10.1016/j.egyr.2024.10.026

Ton, D. T., & Smith, M. A. (2021). Kickstart Your Federal Microgrid Project: Financing Opportunities and Best Practices. Electricity Journal, 25(8), 84–94. https://doi.org/10.1016/j.tej.2012.09.013

U.S. Department of Defense. (2024). NDIS Implementation Plan.

WORLD BANK. (2025). A KNOWLEDGE NOTE SERIES FOR THE ENERGY & EXTRACTIVES GLOBAL PRACTICE Measuring the Climate Resilience of the Power Sector: Harmonization, Not Homogenization. https://documents1.worldbank.org/curated/en/099017509032520805/pdf/IDU-8b11492c-09a2-4152-9dea-35cbacaf719c.pdf

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Published

2026-01-30