The Experts below are selected from a list of 36 Experts worldwide ranked by ideXlab platform

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

  • network architecture and fast handover scheme using mobility anchor for umts wlan interworking
    Asia-Pacific Network Operations and Management Symposium, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

  • APNOMS - Network architecture and fast handover scheme using mobility anchor for UMTS-WLAN interworking
    Managing Next Generation Networks and Services, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

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

  • network architecture and fast handover scheme using mobility anchor for umts wlan interworking
    Asia-Pacific Network Operations and Management Symposium, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

  • APNOMS - Network architecture and fast handover scheme using mobility anchor for UMTS-WLAN interworking
    Managing Next Generation Networks and Services, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

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

  • An Improved Remote Authentication Scheme with Smart Card
    Computers & Security, 2012
    Co-Authors: Wen Xiang
    Abstract:

    This paper analyzed some security problems caused by information leakage in some existing remote Authentication schemes with smart card,and proposed an improved remote Authentication scheme with smart card.This scheme enhances the secrecy of Authentication information in smart card,and Improve the reliability and random of Interactive information by using mutual Authentication and random number,Enable Authentication system not under the threat of forgery attack and replay attack,so it can improve the security of the application system.

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

  • network architecture and fast handover scheme using mobility anchor for umts wlan interworking
    Asia-Pacific Network Operations and Management Symposium, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

  • APNOMS - Network architecture and fast handover scheme using mobility anchor for UMTS-WLAN interworking
    Managing Next Generation Networks and Services, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

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

  • network architecture and fast handover scheme using mobility anchor for umts wlan interworking
    Asia-Pacific Network Operations and Management Symposium, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.

  • APNOMS - Network architecture and fast handover scheme using mobility anchor for UMTS-WLAN interworking
    Managing Next Generation Networks and Services, 2007
    Co-Authors: Incheol Kim, Sungkuen Lee, Taehyung Lim, Eallae Kim, Jinwoo Park
    Abstract:

    UMTS-WLAN interworking has attracted many research efforts because each of UMTS and WLAN can maximize its capability in service provisioning. Through UMTS-WLAN internetworking, users can be offered the most suitable services according to service area and service provider can reduce network building and maintenance costs. In this paper, we propose a network architecture and fast handover scheme using Mobility Anchor (MA) for UMTS-WLAN interworking. MA is provided at the boundary between GGSN and PDG, under the 3GPP-proposed interworking reference model. Such MA can Enable Authentication and session establishment before L2 handover of the mobile node, so that seamless and fast vertical handover could be possible. Through computer simulation using OPNET for the performance measurement, the efficiency and validity of the proposed scheme has been examined.