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Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeB 2010.10-2 – ICT for energy-efficient buildings and spaces of public use 1 Smart Energy Efficient Middleware for Public Spaces Smart City - UPM Turin, February 27, 2013 Turin, February 27, 2013 – Smart City - UPM

Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeBEeB.ICT.2010.10-2 – ICT for energy-efficient buildings and spaces of

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Page 1: Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeBEeB.ICT.2010.10-2 – ICT for energy-efficient buildings and spaces of

Smart Energy Efficient Middleware for Public Spaces

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Smart Energy Efficient Middleware for Public Spaces

Smart City - UPMTurin, February 27, 2013

Turin, February 27, 2013 – Smart City - UPM

Page 2: Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeBEeB.ICT.2010.10-2 – ICT for energy-efficient buildings and spaces of

Smart Energy Efficient Middleware for Public Spaces

FP7-

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Summary

• Consortium• Project Objectives• The project expected impacts• Project Workplan• The demonstrator• The Building Information Model• The Interoperability for Energy Simulations• The definition of the WSN• The software infrastructure• The link between BIM and BAS• Conclusions

Turin, February 27, 2013 – Smart City - UPM

Page 3: Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeBEeB.ICT.2010.10-2 – ICT for energy-efficient buildings and spaces of

Smart Energy Efficient Middleware for Public Spaces

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Consortium

Politecnico di Torino Italy

Katholieke Universiteit Leuven Belgium

Universitè Claude Bernard Lyon 1 France

Centro Ricerche Fiat Italy

Fraunhofer FIT Germany

Istituto Superiore Mario Boella Italy

ST Microelectronics Italy

CNet Svenska AB Sweden

Sinovia SA France

ENIServizi Italy

Uni

vers

ityRe

sear

chCe

nter

Indu

stry

and

SME

Turin, February 27, 2013 – Smart City - UPM

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Smart Energy Efficient Middleware for Public Spaces

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Project Objectives

SEEMPubS addresses energy and CO2 footprint reduction in existing public buildings and spaces without significant constructions works, by an intelligent ICT-based service-based monitoring and management of energy consumption.

1. To develop an integrated electronic system and interoperable web-based software solution for real-time energy performance monitoring and control of lighting, heating, ventilation and air conditioning services through wireless sensor networks in existing buildings and open public spaces.

2. To significantly raise people’s awareness for energy efficiency in public spaces basing on the management philosophy of the integrated facility. The system will provide multidimensional visualization of parameters of building operations and data sharing from energy-consuming equipment and appliances.

3. To define standards (such as ISO) and a model for existing buildings and public spaces in Europe starting from the most significant research results achieved through project.

Turin, February 27, 2013 – Smart City - UPM

Page 5: Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeBEeB.ICT.2010.10-2 – ICT for energy-efficient buildings and spaces of

Smart Energy Efficient Middleware for Public Spaces

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The project expected impacts

The expected project impact is in accordance with the European Commission directives:• Contribute to the opening of a market for ICT-based customized solutions

integrating numerous products from different vendors and offering services from design of integrated systems to the operation and maintenance phases.

• Establish a collaboration framework between the ICT and the building industry aimed at exploiting opportunities for the development of ICT-based systems in compliance with the Energy Performance of Buildings Directive.

• Reduce energy consumption and CO2 emissions, in line with the policy framework for facilitating the transition to an energy-efficient and low-carbon economy through ICT.

Turin, February 27, 2013 – Smart City - UPM

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Project Workplan

WP7

P

roje

ct M

anag

emen

t

WP1 Energy Auditing

energy saving potentialand Monitoring System

WP2 Control System

Building Management Unitand Building Information Management

and control logic optimization

WP3 Public Energy Awareness

and user interaction Tools to involve users into Interaction

with the EE System and to create ambient awarenessof the

Energy Status of the Public Space

WP4 System Development

IntegrationTelematic Management system

for Energy and Maintenance andmiddleware for

System Interoperability

WP5 Demonstration and ValidationExperimental operation, economic, energetic and environmental assessment

WP6

D

isse

min

ation

: in

form

ation

abo

ut p

olic

ies

MGT

DEM

RTDModels and tools

Process data

Simulation and exploration framework

Test

cas

es

Turin, February 27, 2013 – Smart City - UPM

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The demonstrator

and Cittadella Politecnica

Valentino Castle

Main Campus

The campus of Politecnico di Torinois the demonstrator of SEEMPubS.

http://seempubs.polito.it/

Turin, February 27, 2013 – Smart City - UPM

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The demonstrator

Six TEST and REFERENCE room have been selected different for size, use, period of construction, etc.

Milano, February 25, 2013 – Incontro con IFMA

TR

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The Building Information Model

The demonstrator

Valentino Castle

Main Campus

Cittadella Politecnica

Exis

ting/

His

toric

al B

uild

ings

First phase: building information model standards and collaborative work.

Second phase: basic models.

Third phase: survey and preliminary model.

Fourth phase: selection of interoperable software.

Fifth phase: model implementation for analysis and management.

Turin, February 27, 2013 – Smart City - UPM

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Smart Energy Efficient Middleware for Public Spaces

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The Interoperability forEnergy Simulations

Interoperability has been tested on thermal and lighting fields.

Revit Architecture

fbx3ds Max Ecotect

Daysim

Radiance

FILE LINK MANAGER

Turin, February 27, 2013 – Smart City - UPM

Revit Architecture

dxf SketchUp7Pro TRNASYS17

HVA

CLi

ghtin

g

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The definition of the WSN

Each room has been equippend.

Turin, February 27, 2013 – Smart City - UPM

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The software infrastructure

A web service-oriented software infrastructure has been designed to manage heterogeneous and commercial wireless sensor nodes belonging to different WSNs. To enable hardware independent access to the nodes the LinkSmart middleware has been selected. So, the software should automatically associate virtual end-nodes to real physical devices in the different WSNs.

LinkSmart Architecture

Turin, February 27, 2013 – Smart City - UPM

Page 13: Smart Energy Efficient Middleware for Public Spaces FP7-2010-NMP-ENV-ENERGY-ICT-EeBEeB.ICT.2010.10-2 – ICT for energy-efficient buildings and spaces of

Smart Energy Efficient Middleware for Public Spaces

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The link between BIM and BAS

To link BIM and BAS, an Android application has been developed in order to provide real time building information related to a specific room exploiting both augmented and virtual reality.

Turin, February 27, 2013 – Smart City - UPM

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Smart Energy Efficient Middleware for Public Spaces

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Conclusions

Due to the complexity and the heterogeneity of the architectural technologies and solutions, only collaborative research based on standards can help the AEC&FM industry to solve the present problems.

The SEEMPubS activity will continue with the DIMMER project.

Maintenance

SEEMPubS

Energy

Lighting

HVAC Simulations

BIM CFO

FM

Turin, February 27, 2013 – Smart City - UPM

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http://seempubs.polito.it/

Turin, February 27, 2013 – Smart City - UPM