The Experts below are selected from a list of 89424 Experts worldwide ranked by ideXlab platform

P Maestrini - One of the best experts on this subject based on the ideXlab platform.

  • routing in mobile ad hoc networks the virtual distance vector protocol
    Mobile Adhoc and Sensor Systems, 2007
    Co-Authors: A Robba, P Maestrini
    Abstract:

    A novel routing protocol for wireless mobile ad hoc networks, named virtual distance vector (VDV), is presented. This protocol augments AODV with a virtual overlay, unrelated to the actual network topology, which accounts for routes kept proactively by mobile nodes acting as scouts toward the nodes in the respective subsets of peers. This provides routes from any source to any destination node, along which data packets can be routed without the need of preliminary route discovery. The intEnded goal of VDV was to reduce the average End-to-End Delivery time of data packets. VDV has been evaluated against AODV by running extensive simulation under OPNET Modeler. Simulation confirmed the expected advantage of VDV, which increases with increasing node mobility and average route length. The confidence intervals of reported data showed that VDV fits better the dynamic nature of the network.

  • MASS - Routing in Mobile Ad-hoc Networks: the Virtual Distance Vector Protocol
    2007 IEEE Internatonal Conference on Mobile Adhoc and Sensor Systems, 2007
    Co-Authors: A Robba, P Maestrini
    Abstract:

    A novel routing protocol for wireless mobile ad hoc networks, named virtual distance vector (VDV), is presented. This protocol augments AODV with a virtual overlay, unrelated to the actual network topology, which accounts for routes kept proactively by mobile nodes acting as scouts toward the nodes in the respective subsets of peers. This provides routes from any source to any destination node, along which data packets can be routed without the need of preliminary route discovery. The intEnded goal of VDV was to reduce the average End-to-End Delivery time of data packets. VDV has been evaluated against AODV by running extensive simulation under OPNET Modeler. Simulation confirmed the expected advantage of VDV, which increases with increasing node mobility and average route length. The confidence intervals of reported data showed that VDV fits better the dynamic nature of the network.

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

Rod Walsh - One of the best experts on this subject based on the ideXlab platform.

  • Large Scale Content Distribution Protocols
    Computer Communication Review, 2005
    Co-Authors: Christoph Neumann, Vincent Roca, Rod Walsh
    Abstract:

    This paper introduces large scale content distribution pro- tocols, which are capable of scaling to massive numbers of users and providing low delay End-to-End Delivery. Delivery of files and static objects is described, with real-time con- tent streaming being outside the scope of this paper. The focus is on solutions provided by the IETF Reliable Multi- cast Transport Working Group. More precisely, the paper explains FLUTE, ALC and the associated building blocks. Then it discusses how these components are used in the Multimedia Broadcast Multicast Service (MBMS) for 3G systems and in the IP Datacast (IPDC) service for Digital Video Broadcast for Handheld devices (DVB-H).

A Robba - One of the best experts on this subject based on the ideXlab platform.

  • routing in mobile ad hoc networks the virtual distance vector protocol
    Mobile Adhoc and Sensor Systems, 2007
    Co-Authors: A Robba, P Maestrini
    Abstract:

    A novel routing protocol for wireless mobile ad hoc networks, named virtual distance vector (VDV), is presented. This protocol augments AODV with a virtual overlay, unrelated to the actual network topology, which accounts for routes kept proactively by mobile nodes acting as scouts toward the nodes in the respective subsets of peers. This provides routes from any source to any destination node, along which data packets can be routed without the need of preliminary route discovery. The intEnded goal of VDV was to reduce the average End-to-End Delivery time of data packets. VDV has been evaluated against AODV by running extensive simulation under OPNET Modeler. Simulation confirmed the expected advantage of VDV, which increases with increasing node mobility and average route length. The confidence intervals of reported data showed that VDV fits better the dynamic nature of the network.

  • MASS - Routing in Mobile Ad-hoc Networks: the Virtual Distance Vector Protocol
    2007 IEEE Internatonal Conference on Mobile Adhoc and Sensor Systems, 2007
    Co-Authors: A Robba, P Maestrini
    Abstract:

    A novel routing protocol for wireless mobile ad hoc networks, named virtual distance vector (VDV), is presented. This protocol augments AODV with a virtual overlay, unrelated to the actual network topology, which accounts for routes kept proactively by mobile nodes acting as scouts toward the nodes in the respective subsets of peers. This provides routes from any source to any destination node, along which data packets can be routed without the need of preliminary route discovery. The intEnded goal of VDV was to reduce the average End-to-End Delivery time of data packets. VDV has been evaluated against AODV by running extensive simulation under OPNET Modeler. Simulation confirmed the expected advantage of VDV, which increases with increasing node mobility and average route length. The confidence intervals of reported data showed that VDV fits better the dynamic nature of the network.

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