Commercial Building Containing Generation Sources: A Technical and Economic Assessment and Its Potential to Participate in Demand Response Programs
- 1 Department of Electric Power and Automation Engineering, University of São Paulo, São Paulo, Brazil
- 2 Department of Electric Power and Automation Engineering, University of São Paulo, São Paulo, Brazil
- 3 FDTE (Foundation for the Technological Development of the Engineering Sciences), São Paulo, Brazil
Abstract
The interest on studying the impact of demand response is growing, especially on residential and commercial buildings which are responsible for a considerable consumption of energy worldwide. Also, it is virtually unquestionable that in most of these buildings there is a waste of energy, mainly electrical and thermal energy. In this context, the establishment of intelligent networks in these buildings, as well as the use of small or even medium-sized renewable sources of power can significantly contribute to the reduction and preservation of power. In this article, the results of the simulations carried out in a specific simulation program to evaluate the benefits brought by the installation of some local sources of power on a commercial building are presented. It is evaluated the impact on some of the economic variables linked to that system as well as compared its greenhouse gas emissions for the conditions with and without the presence of the local generation. It will also evaluate the building’s response towards the utility requirements, mainly the possibility to reduce or partially compensate the energy consumed, commonly referred to as Demand Response.
- Eid, Ch., Koliou, E., Valles, M., Reneses, J. and Hakvoort, R. (2016) Time-Based Pricing and Electricity Demand Response: Existing Barriers and Next Steps. Utilities Policy, 40, 15-25. https://doi.org/10.1016/j.jup.2016.04.001 https://www.sciencedirect.com/science/article/pii/S0957178716300947
- Baboli, P.T., Moghaddam, M.P. and Eghbal, M. (2011) Present Status and Future Trends in Enabling Demand Response Programs. IEEE Power and Energy Society, General Meeting, San Diego, CA, 24-29 July 2011, 1-6. https://doi.org/10.1109/PES.2011.6039608
- Wang, F., Xu, H.C., Ti, Xu, T., Li, K.P., Shafie-khah, M. and Catalão, J.P.S. (2017) The Values of Market-Based Demand Response on Improving Power System Reliability under Extreme Circumstances. Applied Energy, 193, 220-231. https://www.sciencedirect.com/science/article/pii/S0306261917300971
- Hopkins, A.S. and Whited, M. (2017) Best Practices in Utility Demand Response Programs. http://www.synapse-energy.com/project/best-practices-utility-demand-response-programs
- Albadi, M.H. and E1-Saadany, E.F. (2007) Demand Response in Electricity Markets: An Overview. IEEE Power Engineering Society, General Meeting, Tampa, FL, 24-28 June 2007, 1-5. https://doi.org/10.1109/PES.2007.385728
- Mohajeryami, S., Moghaddam, I.N., Doostan, M., Vatani, B. and Peter Schwarz, P. (2016) A Novel Economic Model for Price-Based Demand Response. Electric Power Systems Research, 135, 1-9. https://doi.org/10.1016/j.epsr.2016.03.026
- Faria, P., Spinola, J. and Vale, Z. (2017) Identified Short and Real-Time Demand Response Opportunities in the Corresponding Requirements and Concise Systematization of the Conceived and Develop. Dram GO, Horizon 2020, European Commission. 41. http://dream-go.ipp.pt/PDF/DREAM-GO_Deliverable2.1.pdf
- European Commission DG Energy (2016) Impact Assessment Study on Downstream Flexibility, Price Flexibility, Demand Response & Smart Metering. Final Report, Belgium. https://ec.europa.eu/energy/en/studies/impact-assessment-study-downstream-flexibility-price-flexibility-demand-response-smart
- Smart Energy Demand Coalition—SEDC (2017) Explicit Demand Response in Europe, Mapping the Markets 2017. Brussels, Abril. http://www.smarten.eu/wp-content/uploads/2017/04/SEDC-Explicit-Demand-Response-in-Europe-Mapping-the-Markets-2017.pdf
- Neves, D., Pina, A. and Silva, C.A. (2015) Demand Response Modeling: A Comparison between Tools. Applied Energy, 146, 288-297. https://doi.org/10.1016/j.apenergy.2015.02.057