NebulOuS edit edit source
A META OPERATING SYSTEM FOR BROKERING HYPER-DISTRIBUTED APPLICATIONS ON CLOUD COMPUTING CONTINUUMS edit edit source
Full project details (EU Research results portal): https://cordis.europa.eu/project/id/101070516
Project description: edit edit source
NebulOus will accomplish substantial research contributions in the realms of cloud and fog computing brokerage by introducing advanced methods and tools for enabling secure and optimal application provisioning and reconfiguration over the cloud computing continuum. NebulOus will develop a novel Meta Operating System and platform for enabling transient fog brokerage ecosystems that seamlessly exploit edge and fog nodes, in conjunction with multi-cloud resources, to cope with the requirements posed by low latency applications. The envisaged BRONCO solution includes the following main directions of work: i.Development of appropriate modelling methods and tools for describing the cloud computing continuum, application requirements, and data streams; these methods and tools will be used for assuring the QoS of the provisioned brokered services. ii.Efficient comparison of available offerings, using appropriate multi-criteria decision-making methods that are able to consider all dimensions of consumer requirements. iii.Intelligent applications, workflows and data streams management in the cloud computing continuum.iv.Addressing in a unified manner the security aspects emerging in of transient cloud computing continuums (e.g., access control, secure network overlay etc.). v.Conducting and monitoring smart contracts-based service level agreements.
EuroVoc IDs: /natural sciences/biological sciences/ecology/ecosystems
EU Programme: Horizon Europe
EU Project
Project publications:
| EU Project | Has Title | Has Category | Has Type | Has Year | Has DOI |
|---|---|---|---|---|---|
| NebulOus | An Implemented Architecture for a Meta Operating System Managing Distributed Applications Across Heterogeneous Resources | Cloud, Edge, and Continuum Computing | Book chapters | 2025 | https://doi.org/10.1007/978-3-031-87778-0 36 |
| NebulOus | NebulOuS: A Meta-Operating System with Cloud Continuum Brokerage Capabilities | Cloud, Edge, and Continuum Computing | Conference proceedings | 2022 | https://doi.org/10.1109/FMEC59375.2023.10306090 |
| NebulOus | A multi-context Severity-based SLO Violation Detector | Cloud, Edge, and Continuum Computing | Conference proceedings | 2024 | https://doi.org/10.1109/ISCC.2024.10733630 |
| NebulOus | Federated Learning in Multi Clouds and resources constraint devices at the Edge | Cloud, Edge, and Continuum Computing | Conference proceedings | 2024 | https://doi.org/10.1109/IISA62523.2024.10786719 |
| NebulOus | Introducing Monitoring and extended Elasticity support in TOSCA | Cloud, Edge, and Continuum Computing | Conference proceedings | 2023 | https://doi.org/10.1145/3603166 |
| NebulOus | Evaluation of Cloud Continuum Computing Resources: A Mathematical Programming approach | Cloud, Edge, and Continuum Computing | Conference proceedings | 2024 | https://doi.org/10.1109/IISA.2024.10786686 |
| NebulOus | Modelling Adaptive Autonomic Cloud Application Utility Using Template Functions | Cloud, Edge, and Continuum Computing | Conference proceedings | 2023 | https://doi.org/10.1109/ACSOS-C58168.2023.00053 |
| NebulOus | Maximizing the Application Utility in the Computing Continuum by Feasible Site Selection | Cloud, Edge, and Continuum Computing | Conference proceedings | 2024 | https://doi.org/10.1109/UCC63386.2024.00027 |
| NebulOus | Journal of Cloud Computing | Cloud, Edge, and Continuum Computing | Peer reviewed articles | 2024 | https://doi.org/10.1186/S13677-024-00653-5 |