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Palma, P, Gouveia JP, Seixas J, Simões S.  2017.  Thermal Comfort in the Portuguese Households: Mapping Energy Needs at Civil Parish Level, . 21-22 Sep.. ME3 Conference - Meeting on Energy and Environmental Economics. , Aveiro
Palma, P, Gouveia JP, Seixas J, Simões S.  2017.  Thermal Comfort in the Portuguese Households: Mapping Energy Needs at Civil Parish Level. ME3 Conference - Meeting on Energy and Environmental Economics. , Aveiro, Portugal. 21-22 September, http://www.ua.pt/degeit/me3/
Gouveia, JP, Dias L, Fortes P, Seixas J.  2012.  TIMES_PT: Integrated Energy System Modeling. 1st Int'l Workshop on Information Technology for Energy Applications (IT4ENERGY'2012). , Lisbon, Portugal: Vol. 923 of CEUR Workshop Proceedings, ISSN 1613-0073
Fortes, P, Simões S, Seixas J, Regemorter DV, Ferreira F.  2013.  Top-down and bottom-up modelling to support low-carbon scenarios: climate policy implications. Climate Policy. 13:285–304., Number 3 AbstractWebsite

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Fortes, P, Simões S, Seixas J, van Regemorter D.  2009.  Top-down vs. Bottom-up modeling to support climate policy - Comparative analysis for the Portuguese economy. , 7-10 September. 10th IAEE European Conference. Energy, Policies and Technologies for Sustainable Economies.. , Viena, Austria: International Association of Energy Economics
Gouveia, JP, Seixas J.  2016.  Tracking fuel poverty with smart meters: the case of Évora, 4-5 February. Energy Economics Iberian Conference. , ISEL, Lisbon
Gregório, V, Simões S, Seixas J.  2015.  Trade- offs between climate change adaptation and mitigation strategies for resilient cities: the case of thermal comfort in households under the ClimAdapt.Local project, 2-4 September. World Symposium on Climate Change Adaption. , Manchester, United Kingdom
Seixas, J, Fortes P, Simões S, Gouveia JP.  2017.  Trajetórias de descarbonização e impactos na matriz energética [Pathways for the decarbonisation and impact in the energy matrix] , 14 December. Conferência A transição energética na Península Ibérica - Associação Portuguesa de Economia da Energia [Conference on the energy transition in the Iberian Peninsula of the APEEN – Portuguese Association for Energy Economy]. , ISCTE. Instituto Universitário de Lisboa. Lisboa, Portugal: APEEN
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Gouveia, JP, Seixas J, Shiming L, Bilo N, Valentim A.  2015.  Understanding electricity consumption patterns in households through data fusion of smart meters and door-to-door surveys, 1–6 June. eceee 2015 Summer Study on energy efficiency. , Club Belambra Les Criques, Presqu’île de Giens. Toulon/Hyères, France: ECEEE
Gouveia, JP, Seixas J.  2016.  Unraveling electricity consumption profiles in households through clusters: Combining smart meters and door-to-door surveys. Energy and Buildings. 116:666–676. AbstractWebsite

Improvements of energy efficiency and reduction of Electricity Consumption (EC) could be pushed by increased knowledge on consumption profiles. This paper contributes to a comprehensive understanding of the EC profiles in a Southwest European city through the combination of high-resolution data from smart meters (daily electricity consumption) with door-to-door 110-question surveys for a sample of 265 households in the city of Évora, in Portugal. This analysis allowed to define ten power consumption clusters using Ward's method hierarchical clustering, corresponding to four distinct types of annual consumption profiles: U shape (sharp and soft), W shape and Flat. U shape pattern is the most common one, covering 77% of the sampled households.
The results show that three major groups of determinants characterize the electricity consumption segmentation: physical characteristics of a dwelling, especially year of construction and floor area; HVAC equipment and fireplaces ownership and use; and occupants’ profiles (mainly number and monthly income).
The combination of the daily EC data with qualitative door-to-door survey-based data proved to be a powerful data nutshell to distinguish groups of power consumers, allowing to derive insights to support DSOs, ESCOs, and retailers to design measures and instruments targeted to effective energy reduction (e.g. peak shaving, energy efficiency).