INTERNATIONAL ROAD TRANSPORT UNION (IRU)
INTERNATIONAL ROAD TRANSPORT UNION (IRU)
6 Projects, page 1 of 2
Open Access Mandate for Publications and Research data assignment_turned_in Project2019 - 2022Partners:UNIVERSITE GUSTAVE EIFFEL, Wiener Linien, TUM, UDEUSTO, NTUA +28 partnersUNIVERSITE GUSTAVE EIFFEL,Wiener Linien,TUM,UDEUSTO,NTUA,IRU PROJECTS ASBL,INTERNATIONAL ROAD TRANSPORT UNION (IRU),JJ BADHANDVAERK APS,IBSR,TU Berlin,FZI,VeDeCoM Institute,Deep Blue (Italy),PIAGGIO,HUMANIST,IFSTTAR,INFILI TECH SA,STELAR,FIA,WEGEMT,AIT,CERTH,SWARCO MIZAR SPA,THE POLISH AUTOMOBILE AND MOTORCYCLE FEDERATION,ACASA,TØI,VTI,UITP,EURNEX e. V.,IAM,VUB,Sapienza University of Rome,FHGFunder: European Commission Project Code: 815001Overall Budget: 3,998,610 EURFunder Contribution: 3,998,610 EURDrive2theFuture aims to prepare “drivers”, travelers and vehicle operators of the future to accept and use connected, cooperative and automated transport modes and the industry of these technologies to understand and meet their needs and wants. To achieve this, it models the behaviour of different automated vehicle “drivers” & prognoses acceptance for several automated driving scenarios, develops specialized training tools (3D automated scenarios for VR-goggles, web applications and social media platforms), content, optimized HMI for “driver”-vehicle handovers, CEA and MCA studies for selection of most favorable automated functions realisation and then demonstrates them in 12 Pilots across Europe,and in 3 major events. Pilots cover all automated transportation modes (Automated car, PTW, truck, bus, mini-bus, rail, workboat and drones) and involve driving/riding/rail simulators, VR/AR simulation toolkits, test tracks and real world environments, in which over 1000 AV drivers/passengers, 200 AV operators and 20000 involved citizens experience automation from few hours to 6 months. KPI’s, such as user acceptance, user awareness/appreciation of actual automated function performance (gap between expectations and reality), automated operation efficiency and cost effectiveness, are defined and will be followed through subjective and objective (conflicts analysis) tools. The automated vehicles “driver”/rider/operator behaviour will be modelled and due emphasis is given to cross fertilization issues among different modes. The project will also research relevant legal, ethical and operational issues (with strong user involvement through FIA and 4 of its Clubs, UITP and IRU), the interaction between automated vehicles and relevant MaaS and will issue guidelines, policy recommendations and a user acceptance path Roadmap to Automation. This challenging task is undertaken by 31 Partners from 13 European countries; through 10 interrelated workpackages, over 36 months.
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2019 - 2025Partners:VDL ENABLING TRANSPORT SOLUTIONS BV, Robert Bosch (Germany), Element Energy, PowerCell (Sweden), EE FR +19 partnersVDL ENABLING TRANSPORT SOLUTIONS BV,Robert Bosch (Germany),Element Energy,PowerCell (Sweden),EE FR,COLRUYT GROUP,CNH Industrial (Czechia),H2 ENERGY SA H2 ENERGYLTD,HYDROGEN EUROPE,AIR LIQUIDE FRANCE INDUSTRIE,TD,BMW (Germany),WATERSTOFNET VZW,IRU PROJECTS ASBL,FMF,INTERNATIONAL ROAD TRANSPORT UNION (IRU),ALAB,AL AT,EOLY,ELRINGKLINGER AG,SPHERA SOLUTIONS GMBH,ERM,PO Wels,HYDROGENICS GMBHFunder: European Commission Project Code: 826236Overall Budget: 28,110,100 EURFunder Contribution: 12,000,000 EURH2Haul will develop and demonstrate a total of 16 new heavy-duty (26–44t) hydrogen fuel cell trucks in real-world commercial operations. The project includes two major European truck manufacturers (IVECO and VDL), who will build on existing small-scale prototyping activities to develop new zero-emission trucks tailored to the needs of European customers, mainly in large supermarket fleets. The vehicles will be standardised as far as possible to help encourage the development of the European supply chain. New high-capacity hydrogen refuelling stations will be installed to provide reliable, low carbon hydrogen supplies to the trucks. Most of the stations will be publicly accessible and this project will thus support the uptake of a broader range of hydrogen-fuelled vehicles. The vehicles and infrastructure will be thoroughly tested via an extended trial with the high-profile end users over several years. The comprehensive data monitoring and analysis tasks will ensure that the technical, economic, and environmental performance of the hardware is assessed, and that the business case for further deployment of heavy-duty fuel cell trucks is developed. The scope and ambition of this innovative project will create a range of valuable information that will be disseminated widely amongst truck operators, representatives of the retail sector, policy makers, and the broader hydrogen industry. Hence, H2Haul will validate the ability of hydrogen fuel cell trucks to provide zero-emission mobility in heavy-duty applications and lay the foundations for commercialisation of this sector in Europe during the 2020s.
more_vert Open Access Mandate for Publications assignment_turned_in Project2017 - 2021Partners:GERTRUDE, TOMTOM LOCATION TECHNOLOGY GERMANY GMBH, Ayuntamiento de Bilbao, TOMTOM DEVELOPMENT GERMANY GMBH, Ayuntamiento de Vigo +35 partnersGERTRUDE,TOMTOM LOCATION TECHNOLOGY GERMANY GMBH,Ayuntamiento de Bilbao,TOMTOM DEVELOPMENT GERMANY GMBH,Ayuntamiento de Vigo,REGION OF CENTRAL MACEDONIA,TECHNOLUTION BV,SWARCO HELLAS S.A.,TRAFFIC TECHNIQUE SA,MACQ,KOBENHAVNS KOMMUNE,HTW,TNO,PIAGGIO,Newcastle City Council,IRU PROJECTS ASBL,ERTICO ,INTERNATIONAL ROAD TRANSPORT UNION (IRU),SWM-NL,GERTEK SOCIEDAD DE GESTIONES Y SERVICIOS SA,Gemeente Helmond,PTV Group (Germany),TAXIWAY,CERTH,IDIADA,TU/e,Newcastle University,KAPSCH TRAFFICOM ARCE SISTEMAS SA,FIA,CEIT,INFO TRIP AE,Gemeente Eindhoven,ACASA,DLR,MAPTM,Ajuntament de Barcelona,CTAG,GLS,DYNNIQ DENMARK AS,MLC-ITS EuskadiFunder: European Commission Project Code: 723311Overall Budget: 15,073,600 EURFunder Contribution: 12,575,000 EURThe C-MobILE (Accelerating C-ITS Mobility Innovation and depLoyment in Europe) vision is a fully safe & efficient road transport without casualties and serious injuries on European roads, in particular in complex urban areas and for Vulnerable Road Users. We envision a congestion-free, sustainable and economically viable mobility, minimizing the environmental impact of road transport. C-MobILE will set the basis for large scale deployment in Europe, elevating research pilot sites to deployment locations of sustainable services that are supported by local authorities, using a common approach that ensures interoperability and seamless availability of services towards acceptable end user cost and positive business case for parties in the supply chain. The C-MobILE project will produce 7 key results: - C-ITS framework defined in partnerships with major stakeholders for proposing key deployment enabling solutions on existing pilot sites, including business cases - Strategic Research Agenda defined for key researching and innovation areas that promote sustainable C-ITS deployments and will lead towards automated transport in Europe - Assessment including CBA of the cumulative real-life benefits of clustering C-ITS applications and integrating multiple transport modes in the C-ITS ecosystem - Open secure large-scale C-ITS deployment of new and existing applications demonstrated in complex urban environments interoperable across countries involving large groups of end users - Provide an open platform towards C-ITS sources to support deployment of service concepts on commodity devices, validated by developer communities - Validated operational procedures for large-scale deployment of sustainable C-ITS services in Europe - Released testing methodologies to evaluate the proven impact of C-ITS architectures and services
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2018 - 2022Partners:RENAULT SAS, AUSTRIATECH, IRU PROJECTS ASBL, VeDeCoM Institute, RDW +19 partnersRENAULT SAS,AUSTRIATECH,IRU PROJECTS ASBL,VeDeCoM Institute,RDW,ERTICO ,VOLVO TECHNOLOGY AB,INTERNATIONAL ROAD TRANSPORT UNION (IRU),DELPHI DE,CLEPA,ICCS,BMW (Germany),TNO,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,IDIADA,FIA,MINISTERIE VAN INFRASTRUCTUUR EN WATERSTAAT,CRF,RWTH,University of Leeds,DLR,Chalmers University of Technology,UITP,Robert Bosch (Germany)Funder: European Commission Project Code: 824251Overall Budget: 3,000,000 EURFunder Contribution: 3,000,000 EURThe mission of ARCADE is to coordinate consensus-building across stakeholders for sound and harmonised deployment of Connected, Cooperative and Automated Driving (CAD) in Europe and beyond. ARCADE supports the commitment of the European Commission, the European Member States and the industry to develop a common approach to development, testing, validation and deployment of CAD in Europe and beyond. ARCADE involves 23 partners, 43 associated partners and over 500 subscribers, jointly forming the CAD network of European experts and stakeholders from the public, industry and research sectors, with international outreach. ARCADE uses a dual approach to identify and overcome bottlenecks and in parallel maximise consensus and synergy between stakeholders. Using a road metaphor, ARCADE focusses on “removing road blocks, paving the road, prevent traffic jams and providing navigation to a common destination”. In an annual cycle, ARCADE positions the CAD Network (WP2) centrally which brings together the CAD community at national, European and International levels. The Thematic Areas (WP3) work on content creation leading to consensus-based positions, needs and scenarios. The Knowledge Base (WP4) consolidates the CAD knowhow baseline and serves as public one-stop shop overview of CAD. The main results of ARCADE will be: · Knowledge Base on CAD regulations and policy, on organisations & projects, on standards, on testing methodologies & data and lessons learned · Scenarios, positions, gap analysis and recommendations on 12 thematic CAD areas · Updates of CAD roadmaps · Common Research & Innovation approaches across EU, US, Japan and other countries involved · Web and news flash promotion of national, European and international CAD activities
more_vert Open Access Mandate for Publications and Research data assignment_turned_in Project2021 - 2024Partners:KAMAG TRANSPORTTECHNIK GMBH & CO.KG, CONTINENTAL TEVES, BRP-POWERTRAIN GMBH & CO KG, AUSTRIATECH, DIGITRANS GMBH +26 partnersKAMAG TRANSPORTTECHNIK GMBH & CO.KG,CONTINENTAL TEVES,BRP-POWERTRAIN GMBH & CO KG,AUSTRIATECH,DIGITRANS GMBH,Adasky,APPLIED AUTONOMY AS,SCHENKER & CO AG,NAVTECH RADAR LIMITED,EASYMILE,FRANCE AVIATION CIVILE SERVICES,CONTINENTAL AUTONOMOUS MOBILITY GERMANY GMBH,CERTX AG,IRU PROJECTS ASBL,INTERNATIONAL ROAD TRANSPORT UNION (IRU),Business Upper Austria,Cerema,FH OO,AVINOR AS,Enide Solutions (Spain),SMART AIRPORT SYSTEMS,DEMATIC,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,OTTOPIA TECHNOLOGIES LTD,DFDS AS,LCM,AIT,TERBERG BENSCHOP,ASSOCIATION CARA,FORESIGHT AUTOMOTIVE LTD,ITS NORWAYFunder: European Commission Project Code: 101006817Overall Budget: 26,014,700 EURFunder Contribution: 19,892,900 EURConnected and automated vehicles can be seen as a revolution in the global automotive industry, bringing a new mobility paradigm and having a huge impact on several economic sectors such as logistics industry. Significant progress has been made in the field of autonomous truck driving with numerous prototypes. However, challenges need to be addressed in order to ensure the uptake of this breakthrough technology and the future advent of an overall autonomous logistic chain. The deployment of autonomous heavy-duty vehicles is hindered by the current inabilities of these vehicles to work with the right safety and functional level for 24/7 availability (e.g. harsh weather conditions) and by the lack of harmonized regulatory framework. This project aims at developing and enabling to deploy a safe autonomous transportation systems in a wide range of real-life use cases in a variety of different scenarios. This encompasses the development of autonomous driving system (ADS) capable of handling adverse environmental conditions such as heavy rain, snowfall, fog. The ADS solution will be based on multiple sensor modalities to address 24/7 availability. The ADS will then be integrated into multiple vehicle types used in low-speed areas. Finally, these vehicles will be deployed, integrated and operated in a variety of real-life use cases to validate their value in the application and identify any limitations: forklift (un)loading in warehouses and industrial plants, hub-to-hub shuttle service on open road, automated baggage dispatching in airports, container transfer operations and vessel loading in ports. Logistics operations will be optimized thanks to a new fleet management system that will act as a control tower, gathering all information from subsystems (vehicles, road sensors, etc.) to coordinate the operations and protect vulnerable road users. This work should then enable commercial exploitation of the technology and policy recommendations for certifications processes.
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