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Analysis of Different Scenarios to Include PV Rooftop Systems with Battery Energy Storage Systems in Olive Mills

Author

Listed:
  • Jose Luis Sánchez-Jiménez

    (Department of Electronic and Automatic Engineering, Universidad de Jaén, Campus Las Lagunillas, 23071 Jaen, Spain
    Groupo Marwen Calsan Ltd., Parque Científico Tecnológico Geolit, C/Sierra Morena, Edificio CTSA 1, 23620 Mengíbar, Spain
    Research Group SEEL (Laboratorio de Ingeniería Eléctrica y Electrónica Aplicadas a la Energía Solar), TEP-988, Universidad de Jaen, 23071 Jaen, Spain)

  • Francisco José Muñoz-Rodríguez

    (Department of Electronic and Automatic Engineering, Universidad de Jaén, Campus Las Lagunillas, 23071 Jaen, Spain
    Research Group SEEL (Laboratorio de Ingeniería Eléctrica y Electrónica Aplicadas a la Energía Solar), TEP-988, Universidad de Jaen, 23071 Jaen, Spain
    Center for Advanced Studies in Earth, Energy and Environmental Sciences CEACTEMA, Universidad de Jaen, 23071 Jaen, Spain)

  • Gabino Jiménez-Castillo

    (Research Group SEEL (Laboratorio de Ingeniería Eléctrica y Electrónica Aplicadas a la Energía Solar), TEP-988, Universidad de Jaen, 23071 Jaen, Spain
    Center for Advanced Studies in Earth, Energy and Environmental Sciences CEACTEMA, Universidad de Jaen, 23071 Jaen, Spain
    Department of Electrical Engineering, Universidad de Jaén, Campus Las Lagunillas, 23071 Jaen, Spain)

  • Antonio Javier Martinez-Calahorro

    (Groupo Marwen Calsan Ltd., Parque Científico Tecnológico Geolit, C/Sierra Morena, Edificio CTSA 1, 23620 Mengíbar, Spain
    Research Group SEEL (Laboratorio de Ingeniería Eléctrica y Electrónica Aplicadas a la Energía Solar), TEP-988, Universidad de Jaen, 23071 Jaen, Spain)

  • Catalina Rus-Casas

    (Department of Electronic and Automatic Engineering, Universidad de Jaén, Campus Las Lagunillas, 23071 Jaen, Spain
    Research Group SEEL (Laboratorio de Ingeniería Eléctrica y Electrónica Aplicadas a la Energía Solar), TEP-988, Universidad de Jaen, 23071 Jaen, Spain
    Center for Advanced Studies in Earth, Energy and Environmental Sciences CEACTEMA, Universidad de Jaen, 23071 Jaen, Spain)

Abstract

The industrial sector is not the one with the highest energy consumption but, together with, it represents the most, together with the transport sector, the most polluting ones. Photovoltaic Rooftop systems and battery energy storage systems are very strong candidates to include renewable energy, allowing greater grid autonomy and greenhouse gas mitigation. Therefore, this paper aims to outline it will be provided a methodology based on monitored data to analyze the potential of photovoltaic Rooftops with battery energy storage systems regarding self-consumption and self-sufficiency indices in the industrial sector. Direct self-consumption and self-sufficiency indices, either with or without storage, will be analyzed. In addition, the iso self-consumption and iso self-sufficiency curves are used, which allow us to evaluate the matching between the generation and consumption profiles considering either direct self-consumption or the use of batteries. In this sense, a large, medium, and small olive mill were selected in order to cover the entire spectrum of these industries. Olive mills are suitable candidates for the incorporation of photovoltaic systems since generation profiles match the consumption profiles. However, the size of these systems is highly dependent on the period of consumption to be faced. Regarding batteries, both during the harvest and off-harvest periods , the impact on self-sufficiency becomes significant, reaching increases of up to 10%, depending on the battery capacity used.

Suggested Citation

  • Jose Luis Sánchez-Jiménez & Francisco José Muñoz-Rodríguez & Gabino Jiménez-Castillo & Antonio Javier Martinez-Calahorro & Catalina Rus-Casas, 2023. "Analysis of Different Scenarios to Include PV Rooftop Systems with Battery Energy Storage Systems in Olive Mills," Energies, MDPI, vol. 17(1), pages 1-30, December.
  • Handle: RePEc:gam:jeners:v:17:y:2023:i:1:p:144-:d:1308553
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    References listed on IDEAS

    as
    1. Talavera, D.L. & Muñoz-Rodriguez, F.J. & Jimenez-Castillo, G. & Rus-Casas, C., 2019. "A new approach to sizing the photovoltaic generator in self-consumption systems based on cost–competitiveness, maximizing direct self-consumption," Renewable Energy, Elsevier, vol. 130(C), pages 1021-1035.
    2. Alina Zaharia & Maria Claudia Diaconeasa & Laura Brad & Georgiana-Raluca Lădaru & Corina Ioanăș, 2019. "Factors Influencing Energy Consumption in the Context of Sustainable Development," Sustainability, MDPI, vol. 11(15), pages 1-28, August.
    3. Neves, Sónia Almeida & Marques, António Cardoso & Patrício, Margarida, 2020. "Determinants of CO2 emissions in European Union countries: Does environmental regulation reduce environmental pollution?," Economic Analysis and Policy, Elsevier, vol. 68(C), pages 114-125.
    4. Jahangir, Mohammad Hossein & Montazeri, Mohammad & Mousavi, Seyed Ali & Kargarzadeh, Arash, 2022. "Reducing carbon emissions of industrial large livestock farms using hybrid renewable energy systems," Renewable Energy, Elsevier, vol. 189(C), pages 52-65.
    5. Zhang, Yang & Campana, Pietro Elia & Lundblad, Anders & Yan, Jinyue, 2017. "Comparative study of hydrogen storage and battery storage in grid connected photovoltaic system: Storage sizing and rule-based operation," Applied Energy, Elsevier, vol. 201(C), pages 397-411.
    6. Antonio Quijano & Celena Lorenzo & Luis Narvarte, 2023. "Economic Assessment of a PV-HP System for Drying Alfalfa in The North of Spain," Energies, MDPI, vol. 16(8), pages 1-19, April.
    7. Terlouw, Tom & AlSkaif, Tarek & Bauer, Christian & van Sark, Wilfried, 2019. "Multi-objective optimization of energy arbitrage in community energy storage systems using different battery technologies," Applied Energy, Elsevier, vol. 239(C), pages 356-372.
    8. Muzan Williams Ijeoma & Hao Chen & Michael Carbajales-Dale & Rahimat Oyiza Yakubu, 2023. "Techno-Economic Assessment of the Viability of Commercial Solar PV System in Port Harcourt, Rivers State, Nigeria," Energies, MDPI, vol. 16(19), pages 1-25, September.
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