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Istituto Superiore Mario Boella
Edoardo Calia Research Director
OCOVA 2008, Gap-Charance, September 9-10 2008
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April 1999 Strategic Agreement between Politecnico and
Compagnia di San Paolo to give propulsion to ICT
July 2000 The Institute is established by founding members,Compagnia di San Paolo and Politecnico diTorino
March 2001 Motorola, STMicroelectronics, Telecom Italia become industrial partners
Jan. 2003 ISMB ICT Research Subsidiary of Compagniadi San Paolo
Sept. 2003 ISMB in the new 4.000 m via Boggio building
March 2005 SKF new industrial partner of ISMB
Dec. 2007 ISMB partner of Microsoft Innovation Center
Istituto Superiore Mario Boella (ISMB) History
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ISMB: an applied research excellence Centrewhere Politecnico and Industries work together
1. Cluster of ISMB/Politecnico/ industrial partners joint labs
Antennas and Electromagnetic Compatibility (AC)
Electronic and Systems (Chivasso) (CH)
e-Security (ES)
Networking (NE)
Photonics (PH)
Radio Technologies for Multimedia (RT)
Services & Applications (SA) Satellite Navigation (SN)
Around 250 researchers
a. 140 ISMBa. 110 Politecnico / industrial partners
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Istituto Superiore Mario BoellaMain cooperation with International Institutions
Anderson School of Management (UCLA) USA
Berkeley University USA
Henry Samueli School of Engineering of UCLA USA
Winmec Los Angeles USA
BUPT Beijing University of Posts and Telecommunications - China
University of Hokkaido Japan
FAF Munich University Europe
Ertico Europe
ETSI Europe
Office of Outer Space Affairs of United Nations United Nations
Around 30 projects withmore than 45international partners
15% internationalresearchers
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Industry obtains...
Research: time and cost reduction.
Quick and efficient industrial resultsthrough concurrent engineering (industrialization concepts injected since theinitial phases in common research teams)
IPR acceleration (patent policies betweenpartners)
Coordination of efforts between different Turin researchcentres, network of institutions and ISMB
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Turin Research Centres
Fondazione Torino Wireless
I3P
Piemontech / Innogest
CEIP Camera di Commercio
Unione Industriale / Confindustria
API
A network of institutions
http://www.csp.it/index.phphttp://www.centroestero.org/HomePagehttp://www.to.camcom.it/HomePage8/13/2019 Ismb English
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POF-PLUS
European project (ISMB is coordinator) for the development of subsytems andcomponents for high-speed communication (>1Gb/s) on polymer opticalfibers (POF), in home environment.
Duration: 36 monthsTotal value: ~4M
EU financement: 2,6M
DPSK40Industrial cooperation with Mitel-Teleoptix, for the development of 40Gb/s
transceivers employing DPSK modulation techniques. The transceivers are
meant to become commercial products within 2009 first quarter
Pho ton ic s : m ajo r ongo ing p ro j ec t s
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23 papers for conferences and journals from experimental activities, ofwhich 19 including ISMB authors or activities of interest for ISMB
1 patent, with one ISMB co-author
Optical payload phase 2 : project in cooperation with Alenia, carried-onthrough whole 2007 and concluded with a final demonstration at
Alenia premises in january 2008POF-ALL: EU project, has had its peak activities in 2007. Closing in
2008 with a final demonstrationOptical sensors : LOCK demonstrator installed in the German
Sinagogue in Venice in april 2007, currently still working
Photon ics : s c ien t i fic p rod uct ion in 2007
Photo nic s : m ajor ISMB act ivi t ies run in 2007
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Broadband Wireless Networks Lab
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Current Interests
Not involved in research on WWAN (GPRS, UMTS) - Due to costs of infrastructures research on low range, narrowband and energy-efficient communications
(investigated by TRM lab) WPAN: Bluetooth
Industrial communications and real-time control WLAN: WiFi
Support to indoor and outdoord coverage and configuration Industrial communications Integrated services over WiFi (Voice, video, ) Trials on new technologies
802.11n product testing Mesh and 802.11s implementation on router-boards
Vehicular net and mobility WMAN: WiMax
Early stage
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Main Activities (i)Industrial Wireless
Based on Comaus experience (still growing) Full aid in the design of the new wireless robot control Measurement of throughput, PER, QoS parameters,
proprietary protocols behavior on wireless link, etc Troubleshooting on the prototype
Evolution: integration of other services (monitoring tools,realtime multimedia) on the same device
Other industrial Partners and Proposals Prima Electonics, Gruppo System, Avio, Eicas Eicas proposal (POR)
Wi-Fact proposal (L.297) Practical results
Involvement in the design of the first wirelesscontrol
Integration of Bluetooth in a real assembly line
Theoretical results: publications (1+1)
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Main Activities (ii)Vehicular Ad-hoc Nets (VaNet)
A particular case of Ad-Hoc and Meshcommunications involving mobility In partnership with UCLA
Projects and Partners Main Project: Damasco Funded by MIUR
(Italian Ministry of Research) MAE funding Cooperation with STM Easy Rider proposal (Industria 2015) VeNUS proposal
joint with Politecnico: Ajmone/LoPresti
Activities and expected results Simulation of mobility Simulation of V2V and V2I communications and
selection of appropriate protocol Test of new synchronous protocols (RR-ALOHA)
Experimental measures
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Main Activities (iii)Meshing Cooperative Robots
Development of a cooperativerobotic environment Application to logistics Cooperation between the communication
control plan and cooperation control plan Use of open platforms (routerboards) for new
routing algorithms Fusion of WiFi signal-based positioning with
other techniques (Visual, RFID,)
Project and partners MACP4LOG: funded by Piedomont Region
Erxa, Politecnico (Bona)
Activities and expected results Case study in Genova Harbor (Ignazio
Messina) Development of new control planes
(possible theoretical results)
v
v
v
Rete
cablata
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Main Activities (iv)(Outdoor) Mesh Networks
Implementation of Ad-Hocrouting Use of open platforms
(routerboards) Application to several projects
environmental monitoring
contryside connectivity againstDigital Divide
Practical results Prototype of SEPA Monviso
WiFi Terna project
Future steps by L2 mesh standard -IEEE
802.11s Mesh Media- Hybrid Networks
MMH Energy Aware mesh networks
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Introducing the Navigation Lab
The Navigation Lab ( NavSAS) is a joint research group of ISMB andP o l i t e c n i c o d i To r i n o University,operating in the satellite navigationand localization sectors.
Some numbers:
around 25 researchers
more than 90 publications (journals
and conferences) 6 patents owned by the Lab
More than 30 R&D projects since2004 related to GPS and Galileo
www.galileoblog.eu
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NavSAS Keywords on Galileo and
EGNOS:Galileo receiver core technologiesand algorithms (mass-market,
professional, Safety-Of-Life)
Fully SW and SW Radioimplementations for Galileo mass-market receivers
Assisted-Galileo and Assisted-GPS as a core element (OMA-
SUPL)Interference detection andmitigation algorithms
Quality control and multipathmitigation
Navigation at a Glance
Torino
GIOVE-A acquired and startedbeing tracked at 03.17.40 am
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NavSAS Keywords on Technology Platform
Development: Design and development of NAV/COM
embedded systems (e.g. Tetra+EGNOS,DMR+EGNOS)
Assisted-Galileo and Assisted-GPSimplementation on embedded systems(OMA-SUPL)
Ad-hoc design and development ofembedded solutions (HW and FW)
EGNOS Local Element
SW+FW interfaces toward third partyapplications
Mapping
Navigation at a Glance
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Higher Education on Galileo
The Master on Navigation and RelatedApplications aims at creatingspecialists and technicians able to
operate within Galileo/GPS frameworks
both at core system and services level.
UN-OOSA
5 editions since 2004, more than 75 worldwidestudents. Most of them are now in the satellite
navigation field
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Wireless Sensor Networks Lab
Started in 2004, with focus on the WirelessSensor Network (WSN) domain
At the end of 2007 new explorative research
areas (applied to WSN) have been launchedin cooperation with Polytechnic of Turin Cognitive Radio Networks Distributed Signal Processing Synchronization Opportunistic Communications
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WSN Competence Domain: Technologies
E-SEC Lab
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S&A Lab
Microsystems, Antennasand EMC Labs Microsystems Lab
Competence owned / being developed within TRMCompetence shared / area of cooperation with other Labs
Application Layer
Application SupportLayer
Network Layer
MAC Sub-Layer
Physical Layer
Wireless Sensor Networks Layered Protocol Modeland cross-layer Management Planes
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Other Competences: Match with WSN
Cognitive RadioNetworks
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Synchronization
OpportunisticCommunications
Distributed SignalProcessing
Application Layer
Application SupportLayer
Network Layer
MAC Sub-Layer
Physical Layer
Wireless Sensor Networks Layered Protocol Modeland cross-layer Management Planes
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WSN Competence Domain: Applications
Intelligent Transportation Systems (ITS) Control and Automation Safety/Security and Surveillance E-Health
Ambient Intelligence / Personal Networks
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WSN Competence Domain: Platforms
Proprietary / Open-source CrossBow:
MICA2, MICA2dot: TinyOS, Proprietary radio MICAz, TelosB : TinyOS, IEEE 802.15.4 radio/MAC
Imote2: Microsoft .NET micro framework, IEEE802.15.4 radio/MAC
ZigBee Chipcon:
CC2420 CC2430 / CC2431 (with location engine)
Integration
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Prototypes/SystemsSoluzioni wireless RFID
Cane for blind users with integrated RFID and voice syntetizer Smart Cart (documents and objects tracking
using RFID)
Automated inventory system
Food (wine) chain traceability:RFID
Pationts identification in hospitalsusing an RFID-based bracelet
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Prototypes/SystemsSoluzioni Wireless RFID
Workforce management (tracking, multimedia annotation: pictures, voice etc.) for the city of Turin Paperless processes monitoring using mobile phones and
microbrowsers
Emergency managements and eCall for automotive application,EU project GST
Emergency management
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Prototypes/Systems
DVBT and voice recognition-based
interaction with the TV-set for onlinefilling of tax forms
Soluzioni per la multimedialita
Infomobility based on DVB-H(Polimedia)
Remote monitoring of patients usingDVB-T
IPTV for home entertainment usingPower line
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Prototypes/Systems
Digital Library BESS (digitization, indexing, search and delivery on line) for the PiemonteRegion
Management of multimedia content for museums (generation,storage and indexing, search and delivery)
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Prototypes/Systems
Remote monitoring of elder patients through wireless sensor networks and wearable devices (heartbeat, motion, temperature, light, location)