The Experts below are selected from a list of 15 Experts worldwide ranked by ideXlab platform

Khalil Drira - One of the best experts on this subject based on the ideXlab platform.

  • PerCom Workshops - Architecting information centric ETSI-M2M systems
    2014 IEEE International Conference on Pervasive Computing and Communication Workshops (PERCOM WORKSHOPS), 2014
    Co-Authors: Luigi Alfredo Grieco, Thierry Monteil, Ben Alaya, Khalil Drira
    Abstract:

    The European Telecommunications Standards Institute (ETSI) released a set of specifications to define a restful architecture for enabling seamless Service provisioning across heterogeneous Machine-to-Machine (M2M) systems. The current version of this architecture is strongly centralized, thus requiring new enhancements to its scalability, fault tolerance, and flexibility. To bridge this gap, herein it is presented an Overlay Service Capability Layer, based on Information Centric Networking design. Key features, example use cases and preliminary performance assessments are also discussed to highlight the potential of our approach.

  • Architecting information centric ETSI-M2M systems
    2014 IEEE International Conference on Pervasive Computing and Communication Workshops PERCOM WORKSHOPS 2014, 2014
    Co-Authors: Luigi Alfredo Grieco, Mahdi Ben Alaya, Thierry Monteil, Khalil Drira
    Abstract:

    The European Telecommunications Standards Institute (ETSI) released a set of specifications to define a restful architecture for enabling seamless Service provisioning across heterogeneous Machine-to-Machine (M2M) systems. The current version of this architecture is strongly centralized, thus requiring new enhancements to its scalability, fault tolerance, and flexibility. To bridge this gap, herein it is presented an Overlay Service Capability Layer, based on Information Centric Networking design. Key features, example use cases and preliminary performance assessments are also discussed to highlight the potential of our approach.

Luigi Alfredo Grieco - One of the best experts on this subject based on the ideXlab platform.

  • PerCom Workshops - Architecting information centric ETSI-M2M systems
    2014 IEEE International Conference on Pervasive Computing and Communication Workshops (PERCOM WORKSHOPS), 2014
    Co-Authors: Luigi Alfredo Grieco, Thierry Monteil, Ben Alaya, Khalil Drira
    Abstract:

    The European Telecommunications Standards Institute (ETSI) released a set of specifications to define a restful architecture for enabling seamless Service provisioning across heterogeneous Machine-to-Machine (M2M) systems. The current version of this architecture is strongly centralized, thus requiring new enhancements to its scalability, fault tolerance, and flexibility. To bridge this gap, herein it is presented an Overlay Service Capability Layer, based on Information Centric Networking design. Key features, example use cases and preliminary performance assessments are also discussed to highlight the potential of our approach.

  • Architecting information centric ETSI-M2M systems
    2014 IEEE International Conference on Pervasive Computing and Communication Workshops PERCOM WORKSHOPS 2014, 2014
    Co-Authors: Luigi Alfredo Grieco, Mahdi Ben Alaya, Thierry Monteil, Khalil Drira
    Abstract:

    The European Telecommunications Standards Institute (ETSI) released a set of specifications to define a restful architecture for enabling seamless Service provisioning across heterogeneous Machine-to-Machine (M2M) systems. The current version of this architecture is strongly centralized, thus requiring new enhancements to its scalability, fault tolerance, and flexibility. To bridge this gap, herein it is presented an Overlay Service Capability Layer, based on Information Centric Networking design. Key features, example use cases and preliminary performance assessments are also discussed to highlight the potential of our approach.

Thierry Monteil - One of the best experts on this subject based on the ideXlab platform.

  • PerCom Workshops - Architecting information centric ETSI-M2M systems
    2014 IEEE International Conference on Pervasive Computing and Communication Workshops (PERCOM WORKSHOPS), 2014
    Co-Authors: Luigi Alfredo Grieco, Thierry Monteil, Ben Alaya, Khalil Drira
    Abstract:

    The European Telecommunications Standards Institute (ETSI) released a set of specifications to define a restful architecture for enabling seamless Service provisioning across heterogeneous Machine-to-Machine (M2M) systems. The current version of this architecture is strongly centralized, thus requiring new enhancements to its scalability, fault tolerance, and flexibility. To bridge this gap, herein it is presented an Overlay Service Capability Layer, based on Information Centric Networking design. Key features, example use cases and preliminary performance assessments are also discussed to highlight the potential of our approach.

  • Architecting information centric ETSI-M2M systems
    2014 IEEE International Conference on Pervasive Computing and Communication Workshops PERCOM WORKSHOPS 2014, 2014
    Co-Authors: Luigi Alfredo Grieco, Mahdi Ben Alaya, Thierry Monteil, Khalil Drira
    Abstract:

    The European Telecommunications Standards Institute (ETSI) released a set of specifications to define a restful architecture for enabling seamless Service provisioning across heterogeneous Machine-to-Machine (M2M) systems. The current version of this architecture is strongly centralized, thus requiring new enhancements to its scalability, fault tolerance, and flexibility. To bridge this gap, herein it is presented an Overlay Service Capability Layer, based on Information Centric Networking design. Key features, example use cases and preliminary performance assessments are also discussed to highlight the potential of our approach.

Joachim Wietzke - One of the best experts on this subject based on the ideXlab platform.

  • Transparent data for the M2M Service Capability Layer: benefits and approaches
    2014 21st International Conference on Telecommunications (ICT), 2014
    Co-Authors: Markus Glaab, Woldemar Fuhrmann, Joachim Wietzke
    Abstract:

    A central goal of Machine-to-Machine Communication is to offer a common horizontal integration platform for various domains, devices, and applications. The automotive domain is considered as an intrinsic part. Besides, visions, associated with future connected vehicles towards Intelligent Transportation Systems and In-Car Multimedia systems, require new (distributed) automotive software architectures. For these reasons, a M2M-based Automotive Service Delivery Platform is an advantageous solution. This paper outlines the data handling within current M2M Communication Architectures, based on an Extended Floating Car Data use-case. On this basis, existing limitations, caused by opaque data, are discussed. Since data-dependent filter criteria are not realizable with current M2M subscribe/notify mechanisms, data acquisition can only be tailored to specific application requirements in a very limited way. This causes a high communication overhead, particularly for complex devices, like vehicles, potentially offering a vast amount of data at a high rate. We motivate data-dependent filter criteria e.g. with respect to subscribe/notify and subscription mediation capabilities. As a solution, this paper proposes making data transparent to the M2M Service Capability Layer and presents approaches to implement necessary enhancements.

  • ICT - Transparent data for the M2M Service Capability Layer: benefits and approaches
    2014 21st International Conference on Telecommunications (ICT), 2014
    Co-Authors: Markus Glaab, Woldemar F. Fuhrmann, Joachim Wietzke
    Abstract:

    A central goal of Machine-to-Machine Communication is to offer a common horizontal integration platform for various domains, devices, and applications. The automotive domain is considered as an intrinsic part. Besides, visions, associated with future connected vehicles towards Intelligent Transportation Systems and In-Car Multimedia systems, require new (distributed) automotive software architectures. For these reasons, a M2M-based Automotive Service Delivery Platform is an advantageous solution. This paper outlines the data handling within current M2M Communication Architectures, based on an Extended Floating Car Data use-case. On this basis, existing limitations, caused by opaque data, are discussed. Since datadependent filter criteria are not realizable with current M2M subscribe/notify mechanisms, data acquisition can only be tailored to specific application requirements in a very limited way. This causes a high communication overhead, particularly for complex devices, like vehicles, potentially offering a vast amount of data at a high rate. We motivate data-dependent filter criteria e.g. with respect to subscribe/notify and subscription mediation capabilities. As a solution, this paper proposes making data transparent to the M2M Service Capability Layer and presents approaches to implement necessary enhancements.

Markus Glaab - One of the best experts on this subject based on the ideXlab platform.

  • Transparent data for the M2M Service Capability Layer: benefits and approaches
    2014 21st International Conference on Telecommunications (ICT), 2014
    Co-Authors: Markus Glaab, Woldemar Fuhrmann, Joachim Wietzke
    Abstract:

    A central goal of Machine-to-Machine Communication is to offer a common horizontal integration platform for various domains, devices, and applications. The automotive domain is considered as an intrinsic part. Besides, visions, associated with future connected vehicles towards Intelligent Transportation Systems and In-Car Multimedia systems, require new (distributed) automotive software architectures. For these reasons, a M2M-based Automotive Service Delivery Platform is an advantageous solution. This paper outlines the data handling within current M2M Communication Architectures, based on an Extended Floating Car Data use-case. On this basis, existing limitations, caused by opaque data, are discussed. Since data-dependent filter criteria are not realizable with current M2M subscribe/notify mechanisms, data acquisition can only be tailored to specific application requirements in a very limited way. This causes a high communication overhead, particularly for complex devices, like vehicles, potentially offering a vast amount of data at a high rate. We motivate data-dependent filter criteria e.g. with respect to subscribe/notify and subscription mediation capabilities. As a solution, this paper proposes making data transparent to the M2M Service Capability Layer and presents approaches to implement necessary enhancements.

  • ICT - Transparent data for the M2M Service Capability Layer: benefits and approaches
    2014 21st International Conference on Telecommunications (ICT), 2014
    Co-Authors: Markus Glaab, Woldemar F. Fuhrmann, Joachim Wietzke
    Abstract:

    A central goal of Machine-to-Machine Communication is to offer a common horizontal integration platform for various domains, devices, and applications. The automotive domain is considered as an intrinsic part. Besides, visions, associated with future connected vehicles towards Intelligent Transportation Systems and In-Car Multimedia systems, require new (distributed) automotive software architectures. For these reasons, a M2M-based Automotive Service Delivery Platform is an advantageous solution. This paper outlines the data handling within current M2M Communication Architectures, based on an Extended Floating Car Data use-case. On this basis, existing limitations, caused by opaque data, are discussed. Since datadependent filter criteria are not realizable with current M2M subscribe/notify mechanisms, data acquisition can only be tailored to specific application requirements in a very limited way. This causes a high communication overhead, particularly for complex devices, like vehicles, potentially offering a vast amount of data at a high rate. We motivate data-dependent filter criteria e.g. with respect to subscribe/notify and subscription mediation capabilities. As a solution, this paper proposes making data transparent to the M2M Service Capability Layer and presents approaches to implement necessary enhancements.