The Experts below are selected from a list of 33 Experts worldwide ranked by ideXlab platform

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

  • Distributed Route Selection Algorithm in Nested
    2020
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a distributed route selection algorithm in nested multihomed mobile networks. The mobile network node sends a request message to all leaf mobile routers inside the mobile network to initiate a session. All leaf mobile routers execute route selection algorithm to select the best route for the desired session of the mobile network node and send the best route to the mobile network node. The mobile network node transmits the packets corresponding to the desired session using the best route to Internet. The mobile routers associated with the best route execute Egress Interface selection algorithm to select the best Egress Interface and deliver the packets corresponding to the desired session of the mobile network node using the best Egress Interface to the next hop of the selected route. The performance of the proposed work is evaluated on the basis of throughput, session loss and route selection time using NEMO SIM simulator. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

  • Performance Analysis of Four Real Life NEMO using Fuzzy Logic Based Route Optimization Algorithm
    International Journal of Applied Research on Information Technology and Computing, 2020
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a fuzzy logic based route optimization in multihomed mobile network. It considers four real life examples of mobile network. The mobile routers in each mobile network uses best Egress determination algorithm to identify its best Egress Interface for each service type supported by the mobile network dynamically and send the best Egress Interface per service type information to a local fixed node inside each of the mobile network. The mobile network node sends a request message to the local fixed node inside the mobile network to initiate a session. The local fixed node uses best route selection algorithm to select an optimal route from mobile network to Internet for the desired service type of the mobile network node. The performance of the proposed four mobile networks is evaluated and compared using NEMO_SIM simulator which is implemented using JAVA. Results based on a detailed performance evaluation study of the four mobile networks are also presented to demonstrate the efficacy of the proposed scheme.

  • Fuzzy logic based route optimization in a multihomed mobile networks
    Wireless Networks, 2011
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a fuzzy logic based route optimization in multihomed mobile network. The mobile routers in the mobile network use best Egress determination algorithm to identify its best Egress Interface for each service type supported by the mobile network dynamically and send the best Egress Interface per service type information to a local fixed node inside the mobile network. The mobile network node sends a request message to the local fixed node inside the mobile network to initiate a session. The local fixed node uses best route selection algorithm to select an optimal route from mobile network to Internet for the desired service type of the mobile network node. The performance of the proposed work is evaluated using NEMO_SIM simulator which is implemented using JAVA. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

  • Distributed Route Selection Algorithm in Nested Multihomed Mobile Networks
    2009 International Conference on Advances in Computing Control and Telecommunication Technologies, 2009
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a distributed route selection algorithm in nested multihomed mobile networks. The mobile network node sends a request message to all leaf mobile routers inside the mobile network to initiate a session. All leaf mobile routers execute route selection algorithm to select the best route for the desired session of the mobile network node and send the best route to the mobile network node. The mobile network node transmits the packets corresponding to the desired session using the best route to Internet. The mobile routers associated with the best route execute Egress Interface selection algorithm to select the best Egress Interface and deliver the packets corresponding to the desired session of the mobile network node using the best Egress Interface to the next hop of the selected route. The performance of the proposed work is evaluated on the basis of throughput, session loss and route selection time using NEMO_SIM simulator. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

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

  • Distributed Route Selection Algorithm in Nested
    2020
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a distributed route selection algorithm in nested multihomed mobile networks. The mobile network node sends a request message to all leaf mobile routers inside the mobile network to initiate a session. All leaf mobile routers execute route selection algorithm to select the best route for the desired session of the mobile network node and send the best route to the mobile network node. The mobile network node transmits the packets corresponding to the desired session using the best route to Internet. The mobile routers associated with the best route execute Egress Interface selection algorithm to select the best Egress Interface and deliver the packets corresponding to the desired session of the mobile network node using the best Egress Interface to the next hop of the selected route. The performance of the proposed work is evaluated on the basis of throughput, session loss and route selection time using NEMO SIM simulator. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

  • Performance Analysis of Four Real Life NEMO using Fuzzy Logic Based Route Optimization Algorithm
    International Journal of Applied Research on Information Technology and Computing, 2020
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a fuzzy logic based route optimization in multihomed mobile network. It considers four real life examples of mobile network. The mobile routers in each mobile network uses best Egress determination algorithm to identify its best Egress Interface for each service type supported by the mobile network dynamically and send the best Egress Interface per service type information to a local fixed node inside each of the mobile network. The mobile network node sends a request message to the local fixed node inside the mobile network to initiate a session. The local fixed node uses best route selection algorithm to select an optimal route from mobile network to Internet for the desired service type of the mobile network node. The performance of the proposed four mobile networks is evaluated and compared using NEMO_SIM simulator which is implemented using JAVA. Results based on a detailed performance evaluation study of the four mobile networks are also presented to demonstrate the efficacy of the proposed scheme.

  • Fuzzy logic based route optimization in a multihomed mobile networks
    Wireless Networks, 2011
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a fuzzy logic based route optimization in multihomed mobile network. The mobile routers in the mobile network use best Egress determination algorithm to identify its best Egress Interface for each service type supported by the mobile network dynamically and send the best Egress Interface per service type information to a local fixed node inside the mobile network. The mobile network node sends a request message to the local fixed node inside the mobile network to initiate a session. The local fixed node uses best route selection algorithm to select an optimal route from mobile network to Internet for the desired service type of the mobile network node. The performance of the proposed work is evaluated using NEMO_SIM simulator which is implemented using JAVA. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

  • Dynamic route optimisation in a multihomed mobile network
    International Journal of Computational Vision and Robotics, 2010
    Co-Authors: Sulata Mitra
    Abstract:

    The present work is a dynamic route optimisation in nested multihomed mobile network. The mobile network node sends a request message to a local fixed node inside the mobile network to initiate a session. The local fixed node executes route selection algorithm to select the optimal route for the desired session of the mobile network node and delivers the packets corresponding to the desired session of the mobile network node using the optimal route to the internet. The mobile routers associated with the optimal route execute Egress Interface selection algorithm to select the best Egress Interface and deliver the packets corresponding to the desired session of the mobile network node using the best Egress Interface to the next hop of the selected route. The performance of the proposed work is evaluated on the basis of throughput, session loss and route selection time using NEMO_SIM simulator. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

  • Distributed Route Selection Algorithm in Nested Multihomed Mobile Networks
    2009 International Conference on Advances in Computing Control and Telecommunication Technologies, 2009
    Co-Authors: Sulata Mitra, Sumanta Pyne
    Abstract:

    The present work is a distributed route selection algorithm in nested multihomed mobile networks. The mobile network node sends a request message to all leaf mobile routers inside the mobile network to initiate a session. All leaf mobile routers execute route selection algorithm to select the best route for the desired session of the mobile network node and send the best route to the mobile network node. The mobile network node transmits the packets corresponding to the desired session using the best route to Internet. The mobile routers associated with the best route execute Egress Interface selection algorithm to select the best Egress Interface and deliver the packets corresponding to the desired session of the mobile network node using the best Egress Interface to the next hop of the selected route. The performance of the proposed work is evaluated on the basis of throughput, session loss and route selection time using NEMO_SIM simulator. Results based on a detailed performance evaluation study are also presented to demonstrate the efficacy of the proposed scheme.

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

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

Yong-ha Kwon - One of the best experts on this subject based on the ideXlab platform.

  • Networking - IP mobility support with a multihomed mobile router
    NETWORKING 2006. Networking Technologies Services and Protocols; Performance of Computer and Communication Networks; Mobile and Wireless Communication, 2006
    Co-Authors: Hee-dong Park, Yong-ha Kwon
    Abstract:

    This paper proposes a multihoming-based seamless handover scheme using a mobile router with dual Egress Interfaces for wireless train networks. The proposed scheme deploys dual antennas which are individually located at each end of the train for space diversity and connected to each Egress Interface of a mobile router. Since one of the two Egress Interfaces of the mobile router can continuously receive packets through its antenna while the other is undergoing a handover, the proposed scheme can support a seamless handover providing no service disruption or packet loss.