
ROVIMATICA
ROVIMATICA
7 Projects, page 1 of 2
Open Access Mandate for Publications and Research data assignment_turned_in Project2021 - 2024Partners:ROVIMATICA, IRIS, PREZERO ESPANA SA, ENCO SRL, LETI +11 partnersROVIMATICA,IRIS,PREZERO ESPANA SA,ENCO SRL,LETI,IONIQA,UNIBO,ITENE,CSCP,IM2,SERVEO,PARTICULA GROUP d.o.o.,INDORAMA VENTURES EUROPE BV,EUPC,ITC PACKAGING SL,PREZERO IBERIA SLFunder: European Commission Project Code: 101003883Overall Budget: 4,926,220 EURFunder Contribution: 4,926,220 EURThe high-performance requirements requested by the industry and consumers are responsible that currently 17% of total plastic packaging is multilayer material , meaning 3.03 Mt of plastics. Difficulties for recycling it are accentuated, being mostly landfilled or incinerated. MERLIN project has joined a partnership between sorting technology providers, recyclers, research centers, social innovation experts and end-users to design cradle to cradle solutions. This 36-month research project will offer innovative solutions for all the processes required to increase the quality and rate of recycled plastic materials coming from multi-layer packaging waste: (i) SORTING (combining optical sensors, Artificial Intelligence (A.I.) and robotics), (ii) DELAMINATION (optimizing depolymerisation and using solvent-based processes), (iii) RECYLING (techniques for repolymerization and upcycling of polymers) and (iv) VALIDATION (developing rigid and flexible packaging solutions and demonstrating circularity of the processes). These solutions will be developed and later validated in a real environment to reach technology readiness level (TRL) 6. This will be complemented with additional techniques and tools for circularity design to increase knowledge and effectiveness in the closure of the European multilayer plastic chain. Finally, transversal activities related to regulation and standardization, safety, sustainability, business, training, dissemination and communication will support to maximize the impact and effectiveness of the project. These actions are aligned with the ones proposed by the European Plastic Strategy to achieve that by 2030 all plastic packaging should be designed to be recyclable or reusable and decrease the quantity of waste generated Potential annual carbon footprint saving that could be achieved recycling all the multilayer waste in Europe could reach 7.42 Mt CO2/year, with a potential economic of €10,605 million and more 106,000 new job positions.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2020 - 2024Partners:ROVIMATICA, DIMAC SRL, ERRE QUADRO, ED LUXEMBOURG, CRIT +14 partnersROVIMATICA,DIMAC SRL,ERRE QUADRO,ED LUXEMBOURG,CRIT,CSIC,SUPSI,Eraneos Analytics,WAMTECHNIK SP ZOO,IDEAL-TEK SA,GHEPI SRL,ART-ER,TEKNOLOGIAN TUTKIMUSKESKUS VTT OY,MARTEL GMBH,R2M Solution (Italy),WUT,ICENT,Holonix (Italy),GATE SOCIETA PER AZIONIFunder: European Commission Project Code: 952119Overall Budget: 9,213,270 EURFunder Contribution: 7,999,800 EURKITT4SME specifically targets European SMEs and mid-caps to provide them with scope-tailored and industry-ready hardware, software and organisational kits, delivered as a modularly customisable digital platform, that seamlessly introduce artificial intelligence in their production systems. Uptake of the resulting packages and of the provided services is strongly supported by the clear characterisation and market readiness of the individual components as well as by the platform grounding on the already established RAMP marketplace. Leverage on the network of Digital Innovation Hubs, three of which are represented in the consortium, ensure that KITT4SME are widely distributed to a wide audience of companies in Europe. Seamless adoption of the customised kits is made possible by a Powered by FIWARE infrastructure that flawlessly combine factory systems (such as MES and ERP), IoT sensors and wearable devices, robots, collaborative robots and other factory data sources with functional modules capable to trigger data-driven value creation.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications assignment_turned_in Project2017 - 2020Partners:GEFRAN SPA, TECHNOLUTION BV, ROVIMATICA, IECS, UNIMORE +29 partnersGEFRAN SPA,TECHNOLUTION BV,ROVIMATICA,IECS,UNIMORE,VUT,CORREA,University of Brescia,REDEN,UCC,GEFRAN DRIVES AND MOTION SRL,TECO A.S.,OPEN ENGINEERING SA,INGENIA MOTION CONTROL,TNO,EMCMCC,FAGOR,Evidence (Italy),JJVCI,ZČU,PHILIPS MEDICAL SYSTEMS NEDERLAND,EDILASIO,IMA,Latvian Academy of Sciences,NEXPERIA BV,SIEMENS PLM,Ikerlan,LABORATORIO IBERICO INTERNACIONAL DE NANOTECNOLOGIA LIN,ITML,IK4-TEKNIKER,CCM,TU/e,Sioux Technologies b.v.,GMVFunder: European Commission Project Code: 737453Overall Budget: 17,027,700 EURFunder Contribution: 5,018,270 EURThe I-MECH target is to provide augmented intelligence for wide range of cyber-physical systems having actively controlled moving elements, hence support development of smarter mechatronic systems. They face increasing demands on size, motion speed, precision, adaptability, self-diagnostic, connectivity, new cognitive features, etc. Fulfillment of these requirements is essential for building smart, safe and reliable production complexes. This implies completely new demands also on bottom layers of employed motion control system which cannot be routinely handled by available commercial products. On the ground of this, the main mission of this project is to bring novel intelligence into Instrumentation and Control Layers mainly by bridging the gap between latest research results and industrial practice in related model based engineering fields. Next, I-MECH will deliver new interfaces and diagnostic data quality for System Behavior Layer. It strives to provide a cutting edge reference motion control platform for non-standard applications where the control speed, precision, optimal performance, easy reconfigurability and traceability are crucial. The high added value of I-MECH reference platform will be directly verified in high-speed/big CNC machining, additive manufacturing, semicon, high-speed packaging and healthcare robotics. In these sectors, the main project pilots will be validated. However, the platform will be applicable in many other generic motion control fields. The project outputs will impact on the entire value chain of the production automation market and, through envisioned I-MECH center, create sustainable proposition for future smart industry.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2024 - 2027Partners:HEMA ENDUSTRI AS, UAM, TH Köln – University of Applied Sciences, Latvian Academy of Sciences, TTTECH AUTO AG +36 partnersHEMA ENDUSTRI AS,UAM,TH Köln – University of Applied Sciences,Latvian Academy of Sciences,TTTECH AUTO AG,TAMPERE UNIVERSITY,Infineon Technologies (Austria),AITEK SPA,FREQUENTIS,TU Delft,SMART CONTROL SYSTEMS AND SOFTWARE JOINT STOCK COMPANY,INNOVATION DIS.CO PRIVATE COMPANY,POLITO,ANYWI,AIT,Harokopio University,INFINEON TECHNOLOGIES DUISBURG GMBH& CO. KG,ROVIMATICA,OYAK RENAULT OTOMOBIL FABRIKALARI AS,INNATERA NANOSYSTEMS BV,IMEC,Velti GMBH,TOFAS,BYLOGIX,EESY-INNOVATION GMBH,TTTech Germany GmbH,DANISI ENGINEERING SRL,IDNEO,IOTAM INTERNET OF THINGS APPLICATIONS AND MULTI LAYER DEVELOPMENT LTD,SMARTSOL SIA,NOKIA TECHNOLOGIES,TÜBİTAK,SANLAB SIMULASYON AR. GE. SAN. TIC. A.S.,CSIC,IECS,UNIMORE,TOP DATA SCIENCE OY,IDEAS & MOTION SRL,SIILI AUTO OY,AVL,Infineon Technologies (Germany)Funder: European Commission Project Code: 101139996Overall Budget: 33,956,400 EURFunder Contribution: 10,016,600 EURShapeFuture will drive innovation in fundamental Electronic Components and Systems (ECS) that are essential for robust, powerful, fail-operational and integrated perception, cognition, AI-enabled decision making, resilient automation and computing, as well as communications, for highly automated vehicles. Its overarching vision is to bring ECS Innovation at the Heart of Europe's Mobility Transformation, thereby elevating Sovereignty by Perfecting Programmable ECS Solutions for Intelligent, Safe, Connected, and Highly Automated Vehicles. The project will result in the following main tangible outcomes: • Safety, security and reliability of in-vehicle systems to levels appropriate for mass-market deployment. • Availability and supply of leading-edge ECS for the European automotive supply chain and for OEMs to be at the forefront of technology developments in the 2030s. • Increased Accuracy and Robustness of ECS for perception with smaller form factors and lower power consumption. • ECS attributed with cognition features and improved human-Machine Interface (HMI). • ECS with cognitive processing and decision-making capabilities. • ECS for resilient automation and communications. • Increased technology acceptance that will also lead to business sovereignty safeguard. 15 demonstrators and 2 impact studies will showcase the project’s achievements and their capability to deliver innovations and secure future application advances in core markets for European society – Mobility, Green Deal, Digital Society, Safety and Industry. The project innovations will leverage the expertise of world-renowned industrial (5 OEMs, 24 Tier-1, Tier-2 and technology providers) and 12 research partners along the complete automotive and semiconductor value chains, providing Europe with a competitive edge in a growing market. Importantly, ShapeFuture will contribute to ensuring European ECS Sovereignty by shaping the future of ECS in mobility.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2024 - 2027Partners:MERCEDES-BENZ AG, TTTechAuto Spain, STMicroelectronics (Switzerland), CARIAD SE, ROVIMATICA +47 partnersMERCEDES-BENZ AG,TTTechAuto Spain,STMicroelectronics (Switzerland),CARIAD SE,ROVIMATICA,KIT,AMPERE SOFTWARE TECHNOLOGY,Robert Bosch (Germany),POLITO,TENSOR EMBEDDED GMBH,CSIC,AVL SOFTWARE AND FUNCTIONS GMBH,TUM,OYKS,UNIMORE,NXP SEMICONDUCTORS CZECH REPUBLIC SRO,Digital Internet Material and Engineering Co-Creation Ltd.,TTTech Computertechnik (Austria),3DS,STTECH GMBH,VALEO ISC,UNIBO,TTTECH AUTO AG,SYSGO AG,ETAS,ISEP,ResilTech (Italy),ZF FRIEDRICHSHAFEN AG,TRUSTINSOFT,Statinf,ALKALEE,LETI,Unisa,Polytechnic University of Milan,TU/e,AVL,BMW (Germany),FORD OTOMOTIV SANAYI ANONIM SIRKETI,TTTech Germany GmbH,Technical University of Ostrava,Critical Software (Portugal),FZI,UNIKIE,Infineon Technologies (Germany),NXP (Netherlands),VIF,ECL,CONTINENTAL AUTOMOTIVE TECHNOLOGIES GMBH,ELEKTROBIT AUTOMOTIVE GMBH,INRIA,UAB TERAGLOBUS,RENAULT SASFunder: European Commission Project Code: 101139789Overall Budget: 61,616,800 EURFunder Contribution: 17,079,300 EURThe HAL4SDV proposal aligns with the EU Strategic Research and Innovation Agenda 2022 on Electronic Components and Systems. It aims to pioneer methods, technologies, and processes for series vehicle development beyond 2030, driven by anticipated advancements in microelectronics, communication technology, software engineering, and AI. HAL4SDV envisions a future where vehicles are fully integrated into smart cities, intelligent highways, and cyberspace, blurring the lines between inside and outside the vehicle. Assumptions include data-centricity, code portability, efficient data fusion, unlimited scalability, real-time capabilities, and robust cybersecurity. The objectives encompass unifying software interfaces, creating a hardware abstraction framework, enabling Over-The-Air (OTA) updates, designing platform architectures, ensuring hardware abstraction and virtualization, offering hardware support, automating integration, supporting safety features, harnessing edge computing, implementing security measures, and providing essential development tools. By focusing on these objectives, HAL4SDV aims to establish a unified ecosystem for software-defined vehicles, positioning Europe's automotive industry for continued leadership post-2030 while leveraging existing results and technologies to accelerate progress.
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