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Ericsson will develop an efficient on-board computing platform including an hardware accelerator for machine learning and other tasks needed to derive a 3D representation of the world around a drone. Ericsson will also develop the low-level software needed by the accelerator. The hardware part of the platform will be in the form of simulated hardware. Ericsson will also engage in setting requirements on both the accelerator and software using the accelerator.

  


 

  • AnyWi Technology BV

    Development of a system for more reliable communication between drone and ground based on multi-path communication technologies,

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  • Royal Netherlands Aerospace Centre

    NLR will Focus on the development of (components for) a Detect And Avoid (DAA) system taking

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  • Internet of Things applications and Multi-Layer development

    ITML will support the design process of user acceptance surveys that will be

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  • ALTUS - LSA Commercial & Manufacturing SA

    Altus lsa, as a certified training provider for drones, as well as a certified

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  • CrossControl will perform applied research of situational awareness enablers in the scope of industrial mobile vehicles and onboard control systems,

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  • Celestia Technologies Group BV (CTG BV) is a Dutch SME, which works in the technological innovations of the Aerospace, Telecommunications

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  • Researching in the field of communication, respective the automotive research field, OTH-AW is experienced in dealing with mobile, and thus

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  • Katam is a Swedish company with products that gathers high resolution data to be used in precision forestry. The customers

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  • Almende actively participate in creating a distributed simulation environment that will speed up the development of new hard and software

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  • Hardware enabler and horizontal service provider, with regards to security and privacy providing secure and reliable communication from IoT devices

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  • Lund University will, assisted by Ericsson and Katam, develop high-level algorithms for model building, semantic SLAM, navigation, recognition and interpretation,

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  • Bauhaus Luftfahrt (BHL) focuses on “Technology verification in the context of UTM”, providing tools and methods toward the development and

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  • TAU’s role is to develop an end-to-end 5G video streaming solutions for remote piloting of drones and flight investigation. In

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  • UNIPR will contribute mainly to the design and implementation of robust localization algorithms and robust drone communication systems.

    In particular,

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  • Nokia’s main role is to develop the video transport, bitrate adaptation and view-dependent streaming technologies for the HEVC encoded 2D

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  • Robonik Mekatronik Teknolojileri

    We are working for the sUAS (drone) and tethered drone technologies for a while. With the technological

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  • Infineon Technologies Italia(IFI) aims at development of PMICs suitable for usage in the target drone architecture of ADACORSA, in particular

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  • TUBITAK will particularly focus on AI based control and path planning requirements for drones and vehicles. TUBITAK will also focus

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  • Ford Otomotive Sanayi a.s

    We are aiming for faster and safer constructions to be possible by more efficient use of

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  • Turkish Aerospace (TAI) will design, produce and provide drones for the project. TAI will contribute to test and validation of

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  • Main role of Turkcell in ADACORSA project is that develop 5G-LTE flying base stations which aims to provide seamless 5G

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  • Airholding - Embraer RT Europe

    EMBRAER will manage the requirements WP using a MBSE approach. It will coordinate the requirements elicitation

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  • Büyütech develops and manufactures high-quality and optimized camera-based ADAS solutions with 10+ years of experience in camera and camera-related technologies.

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  • MB will lead WP7, organising and collating the project’s dissemination, communication, exploitation, and stakeholder engagement activities. Metis Baltic will use

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  • Instituto Superior de Engenharia do Porto

    ISEP will contribute with a safe and secure handover mechanism between drone control stations

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  • Infineon Technologies Austria AG

    IFAT ATV SC is working on the sensors for environment perception, in particular the LiDAR sensor

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  • TTTech Computertechnik AG


    The main goal of TTTech in the ADACORSA project is to research into the topic of safety

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  • FHRs main task will be the design of the transmitter circuits of the radar sensor in Infineon’s automotive radar technology

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  • Giesecke + Devrient Mobile Security GmbH

    GD will develop new concepts to enable reliable and secure communication of drones and to

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  • Consorzio Interuniversitario per la Nanoelettronica

    IUNET will design, manufacture and test custom antenna systems for radar sensors and communications and

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  • Frequentis will build a Flight Information Management System (FIMS) / Common Information Service (CIS) based on the Frequentis UTM/ATM mosaiX SWIM

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  • Human-Factors-Consult GmbH

    The Role of HFC in ADACORSA will be:


    • Conduct user research and define human factors related requirements,

    • Investigate

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  • HUA will participate mainly in cognitive and AI-enabled decision making functionalities for various types of BVLOS services for highly automated

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  • TUD will collaborate closely with various partners, including VIF and NLR, and focus on developing novelalgorithms for detect-and-avoid for single-drone

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  • VIF will evaluate the comparative strengths and weaknesses of different drone sensor modalities for sensor fusion. Different sensor sets and

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  • SYSGO will develop a prototype for a partitioning operating system with ARINC 653 API (e.g. part 4) and a prototype

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  • Our main task is to develop guidelines and processes for approval of drones and operations as well as to analyse

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  • UBW will, in cooperation with SYR and ALM, contribute to the definition, development, implementation and evaluation of a purely algorithmic

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  • As a partner, AVIONTEK is exceptionally well qualified to contribute to ADACORSA, as it will use current and previous experience

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  • CEA - Commissariat a l'Energie Atomique et aux Energies Alternatives

    CEA provides scientific expertise in blockchain-based solutions and, development and simulation

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  • Our solution will enable UASs to fly highly automated and autonomously and enables BVLOS flights in future UAS traffic management

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  • Ericsson will develop an efficient on-board computing platform including an hardware accelerator for machine learning and other tasks needed to

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  • Supply knowhow and technology for electronics subsystems exhibiting strong safety and security design-enablement and features

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  • IFAG will be the coordinator of the whole ADACORSA project, leveraging on a huge coordinating experience spanning across many years

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  • RUBs main task will be the design of the transceiver circuits of the radar sensor using Infineon’s automotive radar technology

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  • AVU is involved with integration of electronic components that enable environmental perception on the drone, as well as development and

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  • TUG will tightly collaborate with its industry partner Infineon Technologies Austria AG (IFAT). TUG focuseson the complete engineering process, troughout

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  • Within the ADACORSA-project Technolution will contribute to the development of verifiably safe and secure drone control systems, working closely in

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  • In ADACORSA, Klagenfurt University (Sensors and Actuators Lab, Institute of Smart Systems Technologies) will focus on concepts for and 3D

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  • Innatera Nanosystems B.V.

    Innatera is involved in developing computing platforms for on-board sensor data processing, within a narrow power and

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Acknowledgement

ADACORSA has received funding from the ECSEL Joint Undertaking (JU) under grant agreement No 876019.
The JU receives support from the European Union’s Horizon 2020 research and innovation programme and Germany, Netherlands, Austria, France, Sweden, Cyprus, Greece, Lithuania, Portugal, Italy, Finland, Turkey.