ORCHIDE | Orchestration of Reliable Computing on Heterogeneous Infrastructures Deployed at the Edge

Summary
On Earth Observation missions, payloads become more complex with more and more instruments collecting a huge amount of data that cannot be fully downloaded and needs to be processed on board. Most of the existing solutions allowing deployment and orchestration of applications at the edge relies on de-facto standard technologies coming from the cloud computing area but the community recognizes a need to adapt them for edge computing contexts such as space systems. Furthermore, ground-based data processing introduces latency between acquisition and production of the information to the end-user. Specific challenges also raise like the dynamic changes of the communication links in terms of network topology, or connectivity, like the energy saving concern, or like cybersecurity issues. To cope with this situation, Unikernel technology promises to be a game-changer as it allows to build lightweight and secure applications that can be deployed in any edge infrastucture. The ORCHIDE project aims to allow a safe and secure deployment and orchestration of image processing applications within Earth Observation satellites, whatever the HW processing resources, and whatever the hosting SW execution platform. The solution aims to be multi-mission / multi-users and to address a large range of services. Based on the end-user needs, a disruptive generic framework and Unikernel based solution will be developed to provide easier access to space with just a simple application that can be updated or even modified during all the satellite lifetime. It will be demonstrated that the ORCHIDE simulation solution can paves the way toward a Digital Twin of such Earth Observation Systems. The ORCHIDE’s impacts will be precious as it will enable scalable adaptable Missions for Meteo Environment Ocean & Observation/Reconnaissance mission and will integrate the green IT values as it enables the overall costs & power consumption optimization, thus allowing an overhead & energy footprint reduction.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101135595
Start date: 01-12-2023
End date: 31-05-2026
Total budget - Public funding: - 2 468 190,00 Euro
Cordis data

Original description

On Earth Observation missions, payloads become more complex with more and more instruments collecting a huge amount of data that cannot be fully downloaded and needs to be processed on board. Most of the existing solutions allowing deployment and orchestration of applications at the edge relies on de-facto standard technologies coming from the cloud computing area but the community recognizes a need to adapt them for edge computing contexts such as space systems. Furthermore, ground-based data processing introduces latency between acquisition and production of the information to the end-user. Specific challenges also raise like the dynamic changes of the communication links in terms of network topology, or connectivity, like the energy saving concern, or like cybersecurity issues. To cope with this situation, Unikernel technology promises to be a game-changer as it allows to build lightweight and secure applications that can be deployed in any edge infrastucture. The ORCHIDE project aims to allow a safe and secure deployment and orchestration of image processing applications within Earth Observation satellites, whatever the HW processing resources, and whatever the hosting SW execution platform. The solution aims to be multi-mission / multi-users and to address a large range of services. Based on the end-user needs, a disruptive generic framework and Unikernel based solution will be developed to provide easier access to space with just a simple application that can be updated or even modified during all the satellite lifetime. It will be demonstrated that the ORCHIDE simulation solution can paves the way toward a Digital Twin of such Earth Observation Systems. The ORCHIDE’s impacts will be precious as it will enable scalable adaptable Missions for Meteo Environment Ocean & Observation/Reconnaissance mission and will integrate the green IT values as it enables the overall costs & power consumption optimization, thus allowing an overhead & energy footprint reduction.

Status

SIGNED

Call topic

HORIZON-CL4-2023-SPACE-01-11

Update Date

12-03-2024
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Horizon Europe
HORIZON.2 Global Challenges and European Industrial Competitiveness
HORIZON.2.4 Digital, Industry and Space
HORIZON.2.4.0 Cross-cutting call topics
HORIZON-CL4-2023-SPACE-01
HORIZON-CL4-2023-SPACE-01-11 End-to-end Earth observation systems and associated services
HORIZON.2.4.10 Space, including Earth Observation
HORIZON-CL4-2023-SPACE-01
HORIZON-CL4-2023-SPACE-01-11 End-to-end Earth observation systems and associated services