The Experts below are selected from a list of 222 Experts worldwide ranked by ideXlab platform

Arpit Agarwal - One of the best experts on this subject based on the ideXlab platform.

  • Windows Azure Storage : A Highly Available Cloud Storage Service with Strong Consistency
    23rd ACM Symposium on Operating Systems Principles (SOSP), 2011
    Co-Authors: Brad Calder, Jaidev Haridas, Chakravarthy Uddaraju, Hemal Khatri, Vaman Bedekar, Shane Mainali, Rafay Abbasi, Huseyin Simitci, Andrew Edwards, Arpit Agarwal
    Abstract:

    Windows Azure Storage (WAS) is a cloud storage system that provides customers the ability to store seemingly limitless amounts of data for any duration of time. WAS customers have access to their data from anywhere at any time and only pay for what they use and store. In WAS, data is stored durably using both local and geographic replication to facilitate disaster recovery. Currently, WAS storage comes in the form of Blobs (files), Tables (structured storage), and Queues (message delivery). In this paper, we describe the WAS architecture, Global Namespace, and data model, as well as its resource provisioning, load balancing, and replication systems.

Brad Calder - One of the best experts on this subject based on the ideXlab platform.

  • SOSP - Windows Azure Storage: a highly available cloud storage service with strong consistency
    Proceedings of the Twenty-Third ACM Symposium on Operating Systems Principles - SOSP '11, 2011
    Co-Authors: Brad Calder, Ju Wang, Aaron W. Ogus, Niranjan Nilakantan, Arild E. Skjolsvold, Sam Mckelvie, Yikang Xu, Shashwat Srivastav, Jiesheng Wu, Huseyin Simitci
    Abstract:

    Windows Azure Storage (WAS) is a cloud storage system that provides customers the ability to store seemingly limitless amounts of data for any duration of time. WAS customers have access to their data from anywhere at any time and only pay for what they use and store. In WAS, data is stored durably using both local and geographic replication to facilitate disaster recovery. Currently, WAS storage comes in the form of Blobs (files), Tables (structured storage), and Queues (message delivery). In this paper, we describe the WAS architecture, Global Namespace, and data model, as well as its resource provisioning, load balancing, and replication systems.

  • Windows Azure Storage : A Highly Available Cloud Storage Service with Strong Consistency
    23rd ACM Symposium on Operating Systems Principles (SOSP), 2011
    Co-Authors: Brad Calder, Jaidev Haridas, Chakravarthy Uddaraju, Hemal Khatri, Vaman Bedekar, Shane Mainali, Rafay Abbasi, Huseyin Simitci, Andrew Edwards, Arpit Agarwal
    Abstract:

    Windows Azure Storage (WAS) is a cloud storage system that provides customers the ability to store seemingly limitless amounts of data for any duration of time. WAS customers have access to their data from anywhere at any time and only pay for what they use and store. In WAS, data is stored durably using both local and geographic replication to facilitate disaster recovery. Currently, WAS storage comes in the form of Blobs (files), Tables (structured storage), and Queues (message delivery). In this paper, we describe the WAS architecture, Global Namespace, and data model, as well as its resource provisioning, load balancing, and replication systems.

Oliver Hanka - One of the best experts on this subject based on the ideXlab platform.

  • Secure setup of inter-provider Ethernet services based on a novel naming schema
    2010 IEEE Network Operations and Management Symposium - NOMS 2010, 2010
    Co-Authors: Bernhard Lichtinger, Oliver Hanka
    Abstract:

    With the emergence of Ethernet services based on carrier grade Ethernet as transport technology in metro and backbone networks a new addressing schema is required to achieve a Global Namespace. As native Ethernet does not provide unique identifiers, which are needed for inter-provider services, we propose a novel naming schema which allows for human readable endpoint identifiers, at the same time avoiding the disclosure of provider internal structures. These addresses are used to establish a connection path suiting the customers' needs. Additionally we propose security mechanisms to authenticate and authorize peers of Ethernet services.

  • NOMS - Secure setup of inter-provider Ethernet services based on a novel naming schema
    2010 IEEE Network Operations and Management Symposium - NOMS 2010, 2010
    Co-Authors: Bernhard Lichtinger, Oliver Hanka
    Abstract:

    With the emergence of Ethernet services based on carrier grade Ethernet as transport technology in metro and backbone networks a new addressing schema is required to achieve a Global Namespace. As native Ethernet does not provide unique identifiers, which are needed for inter-provider services, we propose a novel naming schema which allows for human readable endpoint identifiers, at the same time avoiding the disclosure of provider internal structures. These addresses are used to establish a connection path suiting the customers' needs. Additionally we propose security mechanisms to authenticate and authorize peers of Ethernet services.

Huseyin Simitci - One of the best experts on this subject based on the ideXlab platform.

  • SOSP - Windows Azure Storage: a highly available cloud storage service with strong consistency
    Proceedings of the Twenty-Third ACM Symposium on Operating Systems Principles - SOSP '11, 2011
    Co-Authors: Brad Calder, Ju Wang, Aaron W. Ogus, Niranjan Nilakantan, Arild E. Skjolsvold, Sam Mckelvie, Yikang Xu, Shashwat Srivastav, Jiesheng Wu, Huseyin Simitci
    Abstract:

    Windows Azure Storage (WAS) is a cloud storage system that provides customers the ability to store seemingly limitless amounts of data for any duration of time. WAS customers have access to their data from anywhere at any time and only pay for what they use and store. In WAS, data is stored durably using both local and geographic replication to facilitate disaster recovery. Currently, WAS storage comes in the form of Blobs (files), Tables (structured storage), and Queues (message delivery). In this paper, we describe the WAS architecture, Global Namespace, and data model, as well as its resource provisioning, load balancing, and replication systems.

  • Windows Azure Storage : A Highly Available Cloud Storage Service with Strong Consistency
    23rd ACM Symposium on Operating Systems Principles (SOSP), 2011
    Co-Authors: Brad Calder, Jaidev Haridas, Chakravarthy Uddaraju, Hemal Khatri, Vaman Bedekar, Shane Mainali, Rafay Abbasi, Huseyin Simitci, Andrew Edwards, Arpit Agarwal
    Abstract:

    Windows Azure Storage (WAS) is a cloud storage system that provides customers the ability to store seemingly limitless amounts of data for any duration of time. WAS customers have access to their data from anywhere at any time and only pay for what they use and store. In WAS, data is stored durably using both local and geographic replication to facilitate disaster recovery. Currently, WAS storage comes in the form of Blobs (files), Tables (structured storage), and Queues (message delivery). In this paper, we describe the WAS architecture, Global Namespace, and data model, as well as its resource provisioning, load balancing, and replication systems.

Bernhard Lichtinger - One of the best experts on this subject based on the ideXlab platform.

  • Secure setup of inter-provider Ethernet services based on a novel naming schema
    2010 IEEE Network Operations and Management Symposium - NOMS 2010, 2010
    Co-Authors: Bernhard Lichtinger, Oliver Hanka
    Abstract:

    With the emergence of Ethernet services based on carrier grade Ethernet as transport technology in metro and backbone networks a new addressing schema is required to achieve a Global Namespace. As native Ethernet does not provide unique identifiers, which are needed for inter-provider services, we propose a novel naming schema which allows for human readable endpoint identifiers, at the same time avoiding the disclosure of provider internal structures. These addresses are used to establish a connection path suiting the customers' needs. Additionally we propose security mechanisms to authenticate and authorize peers of Ethernet services.

  • NOMS - Secure setup of inter-provider Ethernet services based on a novel naming schema
    2010 IEEE Network Operations and Management Symposium - NOMS 2010, 2010
    Co-Authors: Bernhard Lichtinger, Oliver Hanka
    Abstract:

    With the emergence of Ethernet services based on carrier grade Ethernet as transport technology in metro and backbone networks a new addressing schema is required to achieve a Global Namespace. As native Ethernet does not provide unique identifiers, which are needed for inter-provider services, we propose a novel naming schema which allows for human readable endpoint identifiers, at the same time avoiding the disclosure of provider internal structures. These addresses are used to establish a connection path suiting the customers' needs. Additionally we propose security mechanisms to authenticate and authorize peers of Ethernet services.