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energy saving in existing buildings by an intelligent use of interoperable ICTs

Authors :
diseg (DISEG) ; Politecnico di Torino
Dipartimento di Automatica e Informatica [Torino] (DAUIN) ; Politecnico di Torino
DENERG (DENERG) ; Politecnico di Torino
DISEG (DISEG) ; Politecnico di Torino
Centre de Thermique de Lyon (CETHIL) ; CNRS - Université Claude Bernard Lyon 1 (UCBL) - Institut National des Sciences Appliquées (INSA)
Fraunhofer institute, FIT (FIT) ; Fraunhofer Institute
Istituto Superiore Mario Boella (ISMB) ; Istituto Superiore Mario Boella
European Project : 260139, ICT, FP7-2010-NMP-ENV-ENERGY-ICT-EeB, SEEMPUBS(2010)
Osello, Anna
Acquaviva, Andrea
Aghemo, Chiara
Blaso, Laura
Dalmasso, Daniele
Erba, David
Fracastoro, Giovanni
Gondre, Damien
Jahn, Marco
Macii, Enrico
Patti, Edoardo
Pellegrino, Anna
Piumatti, Paolo
Pramudianto, Ferry
Savoyat, Jérôme
Spirito, Maurizio
Tomasi, Riccardo
Virgone, Joseph
diseg (DISEG) ; Politecnico di Torino
Dipartimento di Automatica e Informatica [Torino] (DAUIN) ; Politecnico di Torino
DENERG (DENERG) ; Politecnico di Torino
DISEG (DISEG) ; Politecnico di Torino
Centre de Thermique de Lyon (CETHIL) ; CNRS - Université Claude Bernard Lyon 1 (UCBL) - Institut National des Sciences Appliquées (INSA)
Fraunhofer institute, FIT (FIT) ; Fraunhofer Institute
Istituto Superiore Mario Boella (ISMB) ; Istituto Superiore Mario Boella
European Project : 260139, ICT, FP7-2010-NMP-ENV-ENERGY-ICT-EeB, SEEMPUBS(2010)
Osello, Anna
Acquaviva, Andrea
Aghemo, Chiara
Blaso, Laura
Dalmasso, Daniele
Erba, David
Fracastoro, Giovanni
Gondre, Damien
Jahn, Marco
Macii, Enrico
Patti, Edoardo
Pellegrino, Anna
Piumatti, Paolo
Pramudianto, Ferry
Savoyat, Jérôme
Spirito, Maurizio
Tomasi, Riccardo
Virgone, Joseph
Source :
Energy efficiency; Energy efficiency, 2013, 6 (4), pp.707-723

Abstract

International audience<br />In this paper we report a methodology, developed in the context of Smart Energy Efficient Middleware for Public Spaces (SEEMPubS) European Project, aimed at exploiting ICT monitoring and control services to reduce energy usage and CO2 footprint in existing buildings. The approach does not require significant construction work as it is based on commercialoff- the-shelf devices and, where present, it exploits and integrates existing Building Management Systems (BMS) with new sensors and actuator networks. To make this possible, the proposed approach leverages upon the following main contributions: (a) to develop an integrated building automation and control system; (b) to implement a middleware for the energy efficient buildings domain; (c) to provide a multi-dimensional Building Information Modelling (BIM)-based visualization; (d) to raise people's awareness about energy efficiency. The research approach adopted in the project started with the selection, as case studies, of representative test and reference rooms in modern and historical buildings chosen for having different requirements and constraints in term of sensing and control technologies. Then, according to the features of the selected rooms, the strategies to reduce the energy consumptions were defined, taking into account the potential savings related to lighting, heating, ventilation, and air conditioning (HVAC) systems and other device loads (PC, printers, etc.). The strategies include both the control of building services and devices and the monitoring of environmental conditions and energy consumption. In the paper the energy savings estimated through simulation, for both HVAC and lighting, are presented to highlight the potential of the designed system. After the implementation of the system in the demonstrator, results will be compared to the monitored data.

Details

Database :
OAIster
Journal :
Energy efficiency; Energy efficiency, 2013, 6 (4), pp.707-723
Notes :
Energy efficiency, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn899960343
Document Type :
Electronic Resource