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A Smart Grid System for Reducing Energy Consumption and Energy Cost in Buildings in São Paulo, Brazil

Author

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  • Flavio Guerhardt

    (Industrial Engineering Postgraduate Program, Nine July University, Vergueiro Street, 235 and 49, Liberdade, 01504-001 São Paulo, SP, Brazil
    Technologic Park of Sorocaba, Av. Itavuvu, 11777, Jardim Santa Cecilia, 18078-005 Sorocaba-SP, Brazil)

  • Thadeu Alfredo Farias Silva

    (School of Chemical Engineering, State University of Campinas, 13083-840 Campinas, SP, Brazil)

  • Felix Martin Carbajal Gamarra

    (Energy Engineering, University of Brasília, Campus Gama, St. Leste Projeção A-Gama Leste, 72444-240 Brasília-DF, Brazil)

  • Silvestre Eduardo Rocha Ribeiro Júnior

    (Industrial Engineering Postgraduate Program, Nine July University, Vergueiro Street, 235 and 49, Liberdade, 01504-001 São Paulo, SP, Brazil
    Technologic Park of Sorocaba, Av. Itavuvu, 11777, Jardim Santa Cecilia, 18078-005 Sorocaba-SP, Brazil)

  • Segundo Alberto Vásquez Llanos

    (Department of Chemical Engineering and CIMAYDS Research Group, Universidad Nacional Pedro Ruiz Gallo, Avenida Juan XXIII 391, Lambayeque 14013, Peru)

  • Ada Patricia Barturén Quispe

    (Department of Chemical Engineering and CIMAYDS Research Group, Universidad Nacional Pedro Ruiz Gallo, Avenida Juan XXIII 391, Lambayeque 14013, Peru)

  • Milton Vieira Junior

    (Industrial Engineering Post Graduation Program, Methodist University of Piracicaba, Unimep, Rod. do Açúcar, KM 150, 13.423-170 Santa Barbara d’Oeste, SP, Brazil)

  • Elias Basile Tambourgi

    (School of Chemical Engineering, State University of Campinas, 13083-840 Campinas, SP, Brazil)

  • José Carlos Curvelo Santana

    (Production Engineering Post Graduation Program, Polytechnic School, São Paulo University, 05508-010 São Paulo, SP, Brazil)

  • Rosangela Maria Vanalle

    (Industrial Engineering Postgraduate Program, Nine July University, Vergueiro Street, 235 and 49, Liberdade, 01504-001 São Paulo, SP, Brazil)

Abstract

The National Electric Energy Agency (ANEEL) of Brazil, in a bid to encourage energy-conscious energy consumption, has proposed a new sustainable energy tariff modality (the White Tariff) based on off-peak usage. This study aims to compare and contrast situations in which the White Tariff alone is used, and where it is combined with power generation from a generator set or a photovoltaic cell energy system to reduce energy costs. Furthermore, economic, environmental, and social advantages are outlined in the project summaries. Interviews and documentary analyses were conducted in a technology park that uses only the White Tariff and in condominiums that combine the White Tariff with a generator set or a photovoltaic cell system. The data generated was fed into the database of the Horosazonal software to obtain an overview of these companies. Results show that the company adopting the White Tariff alone achieved 19% and US$14,684 in annual savings. However, when the White Tariff is combined with a generator set, the smart grid project proved to be more efficient over time as it obtained an annual benefit of US$35,832 and 62.38% savings. In contrast, the smart grid project combining a photovoltaic cell energy system with the White Tariff achieved an annual benefit of US$52,712, with 68.31% savings and was 1.3 to 5.3 times more profitable than other projects, demonstrating that it was the best smart grip project studied. Furthermore, opting for the White Tariff produced advantages such as a reduction in energy consumption expenses, contributing to a reduction in power outages and blackouts, reduction in greenhouse gas emissions and boosting the company image within society. This study shows that energy-conscious consumption combined with the use of renewable energy sources is environmentally and economically advantageous and can provide future generations with a healthier environment in which people can make use of natural resources in a sustainable manner that is sustainable for planet earth.

Suggested Citation

  • Flavio Guerhardt & Thadeu Alfredo Farias Silva & Felix Martin Carbajal Gamarra & Silvestre Eduardo Rocha Ribeiro Júnior & Segundo Alberto Vásquez Llanos & Ada Patricia Barturén Quispe & Milton Vieira , 2020. "A Smart Grid System for Reducing Energy Consumption and Energy Cost in Buildings in São Paulo, Brazil," Energies, MDPI, vol. 13(15), pages 1-22, July.
  • Handle: RePEc:gam:jeners:v:13:y:2020:i:15:p:3874-:d:391481
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    References listed on IDEAS

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    1. de A. Dantas, Guilherme & de Castro, Nivalde J. & Dias, Luis & Antunes, Carlos Henggeler & Vardiero, Pedro & Brandão, Roberto & Rosental, Rubens & Zamboni, Lucca, 2018. "Public policies for smart grids in Brazil," Renewable and Sustainable Energy Reviews, Elsevier, vol. 92(C), pages 501-512.
    2. Connor, P.M. & Axon, C.J. & Xenias, D. & Balta-Ozkan, N., 2018. "Sources of risk and uncertainty in UK smart grid deployment: An expert stakeholder analysis," Energy, Elsevier, vol. 161(C), pages 1-9.
    3. Milchram, Christine & Hillerbrand, Rafaela & van de Kaa, Geerten & Doorn, Neelke & Künneke, Rolf, 2018. "Energy Justice and Smart Grid Systems: Evidence from the Netherlands and the United Kingdom," Applied Energy, Elsevier, vol. 229(C), pages 1244-1259.
    4. Winfield, Mark & Weiler, Scott, 2018. "Institutional diversity, policy niches, and smart grids: A review of the evolution of Smart Grid policy and practice in Ontario, Canada," Renewable and Sustainable Energy Reviews, Elsevier, vol. 82(P2), pages 1931-1938.
    5. Miranda, Amanda Carvalho & da Silva Filho, Silvério Catureba & Tambourgi, Elias Basile & CurveloSantana, José Carlos & Vanalle, Rosangela Maria & Guerhardt, Flávio, 2018. "Analysis of the costs and logistics of biodiesel production from used cooking oil in the metropolitan region of Campinas (Brazil)," Renewable and Sustainable Energy Reviews, Elsevier, vol. 88(C), pages 373-379.
    6. de Wildt, T.E. & Chappin, E.J.L. & van de Kaa, G. & Herder, P.M. & van de Poel, I.R., 2019. "Conflicting values in the smart electricity grid a comprehensive overview," Renewable and Sustainable Energy Reviews, Elsevier, vol. 111(C), pages 184-196.
    7. Geraldo Cardoso de Oliveira Neto & Luiz Eduardo Carvalho Chaves & Luiz Fernando Rodrigues Pinto & José Carlos Curvelo Santana & Marlene Paula Castro Amorim & Mário Jorge Ferreira Rodrigues, 2019. "Economic, Environmental and Social Benefits of Adoption of Pyrolysis Process of Tires: A Feasible and Ecofriendly Mode to Reduce the Impacts of Scrap Tires in Brazil," Sustainability, MDPI, vol. 11(7), pages 1-18, April.
    8. Kabalci, Yasin, 2016. "A survey on smart metering and smart grid communication," Renewable and Sustainable Energy Reviews, Elsevier, vol. 57(C), pages 302-318.
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