The Experts below are selected from a list of 72474 Experts worldwide ranked by ideXlab platform

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

  • client server Architecture for collaborative remote experimentation
    Journal of Network and Computer Applications, 2007
    Co-Authors: M J Callaghan, Jim Harkin, E Mccolgan, T M Mcginnity, Liam Maguire
    Abstract:

    Experience in teaching engineering related subjects has shown that a complementary approach combining theoretical and practical exercises is vital for effective learning. Increasingly, teaching institutions are offering remote access to distant laboratories as part of an overall e-learning strategy. However, the majority of remote access laboratories developed to date have suffered from a major deficiency, namely the provision of a web-based environment that accurately recreates the group working and tutor driven experience of traditional on-campus based laboratories. This paper addresses this issue and presents a Client-Server Architecture, based on Web services and .NET remoting services, for an integrated learning environment for remote experimentation that allows students in disparate locations to simultaneously and collaboratively complete complex experimental exercises.

  • Client-Server Architecture for collaborative remote experimentation
    Journal of Network and Computer Applications, 2007
    Co-Authors: M J Callaghan, Jim Harkin, E Mccolgan, T M Mcginnity, Liam Maguire
    Abstract:

    Experience in teaching engineering related subjects has shown that a complementary approach combining theoretical and practical exercises is vital for effective learning. Increasingly, teaching institutions are offering remote access to distant laboratories as part of an overall e-learning strategy. However, the majority of remote access laboratories developed to date have suffered from a major deficiency, namely the provision of a web-based environment that accurately recreates the group working and tutor driven experience of traditional on-campus based laboratories. This paper addresses this issue and presents a Client-Server Architecture, based on Web services and .NET remoting services, for an integrated learning environment for remote experimentation that allows students in disparate locations to simultaneously and collaboratively complete complex experimental exercises.

  • Client-Server Architecture for Remote Experimentation for Embedded Systems
    International Journal of Online Engineering (ijoe), 2006
    Co-Authors: M J Callaghan, Jim Harkin, T M Mcginnity, Liam Maguire
    Abstract:

    The proliferation of web based distance education courses in recent years poses unique challenges for the teaching of disciplines involving a high level of practical work. Increasingly web based engineering courses are on offer, augmented by the provision of remote experimentation laboratories. The degree of functionality and level of user access to these remote laboratories has evolved in recent years expedited by advances in web applications and technologies. However the design and implementation of effective and usable remote experimentation facilities poses unique challenges given the inherent complexities of the learning environment and the constraints imposed by a web based delivery mechanism. In addition an overriding challenge in the implementation of remote experimentation environments is to maximise the use of existing resources without incurring substantial redevelopment costs needed to adapt hardware and software tools with the extra functionality needed for online remote access. This paper presents and demonstrates a Client-Server Architecture for distant access to an integrated learning environment for remote experimentation for embedded systems which compliments and augments current web based e-learning approaches while fully utilizing existing on-campus resources without substantial redevelopment effort.

M J Callaghan - One of the best experts on this subject based on the ideXlab platform.

  • client server Architecture for collaborative remote experimentation
    Journal of Network and Computer Applications, 2007
    Co-Authors: M J Callaghan, Jim Harkin, E Mccolgan, T M Mcginnity, Liam Maguire
    Abstract:

    Experience in teaching engineering related subjects has shown that a complementary approach combining theoretical and practical exercises is vital for effective learning. Increasingly, teaching institutions are offering remote access to distant laboratories as part of an overall e-learning strategy. However, the majority of remote access laboratories developed to date have suffered from a major deficiency, namely the provision of a web-based environment that accurately recreates the group working and tutor driven experience of traditional on-campus based laboratories. This paper addresses this issue and presents a Client-Server Architecture, based on Web services and .NET remoting services, for an integrated learning environment for remote experimentation that allows students in disparate locations to simultaneously and collaboratively complete complex experimental exercises.

  • Client-Server Architecture for collaborative remote experimentation
    Journal of Network and Computer Applications, 2007
    Co-Authors: M J Callaghan, Jim Harkin, E Mccolgan, T M Mcginnity, Liam Maguire
    Abstract:

    Experience in teaching engineering related subjects has shown that a complementary approach combining theoretical and practical exercises is vital for effective learning. Increasingly, teaching institutions are offering remote access to distant laboratories as part of an overall e-learning strategy. However, the majority of remote access laboratories developed to date have suffered from a major deficiency, namely the provision of a web-based environment that accurately recreates the group working and tutor driven experience of traditional on-campus based laboratories. This paper addresses this issue and presents a Client-Server Architecture, based on Web services and .NET remoting services, for an integrated learning environment for remote experimentation that allows students in disparate locations to simultaneously and collaboratively complete complex experimental exercises.

  • Client-Server Architecture for Remote Experimentation for Embedded Systems
    International Journal of Online Engineering (ijoe), 2006
    Co-Authors: M J Callaghan, Jim Harkin, T M Mcginnity, Liam Maguire
    Abstract:

    The proliferation of web based distance education courses in recent years poses unique challenges for the teaching of disciplines involving a high level of practical work. Increasingly web based engineering courses are on offer, augmented by the provision of remote experimentation laboratories. The degree of functionality and level of user access to these remote laboratories has evolved in recent years expedited by advances in web applications and technologies. However the design and implementation of effective and usable remote experimentation facilities poses unique challenges given the inherent complexities of the learning environment and the constraints imposed by a web based delivery mechanism. In addition an overriding challenge in the implementation of remote experimentation environments is to maximise the use of existing resources without incurring substantial redevelopment costs needed to adapt hardware and software tools with the extra functionality needed for online remote access. This paper presents and demonstrates a Client-Server Architecture for distant access to an integrated learning environment for remote experimentation for embedded systems which compliments and augments current web based e-learning approaches while fully utilizing existing on-campus resources without substantial redevelopment effort.

Steven W Mclaughlin - One of the best experts on this subject based on the ideXlab platform.

  • Network security for Client-Server Architecture using wiretap codes
    IEEE Transactions on Information Forensics and Security, 2008
    Co-Authors: Matthieu R. Bloch, Ramya Narasimha, Steven W Mclaughlin
    Abstract:

    We propose a method that provides information-theoretic security for Client-Server communications. By introducing an appropriate encoding scheme, we show how a Client-Server Architecture under active attacks can be modeled as a binary-erasure wiretap channel. The secrecy capacity of the equivalent wiretap channel is then used as a metric to optimize the Architecture and limit the impact of the attacks. Upper and lower bounds of the optimal secrecy capacity are derived and analyzed. While still mostly of theoretical interest, our analysis sheds some light on the practical design of resistant and secure Client-Server Architectures.

Matthieu R. Bloch - One of the best experts on this subject based on the ideXlab platform.

  • Network security for Client-Server Architecture using wiretap codes
    IEEE Transactions on Information Forensics and Security, 2008
    Co-Authors: Matthieu R. Bloch, Ramya Narasimha, Steven W Mclaughlin
    Abstract:

    We propose a method that provides information-theoretic security for Client-Server communications. By introducing an appropriate encoding scheme, we show how a Client-Server Architecture under active attacks can be modeled as a binary-erasure wiretap channel. The secrecy capacity of the equivalent wiretap channel is then used as a metric to optimize the Architecture and limit the impact of the attacks. Upper and lower bounds of the optimal secrecy capacity are derived and analyzed. While still mostly of theoretical interest, our analysis sheds some light on the practical design of resistant and secure Client-Server Architectures.

  • Client-Server Architecture Design based on Wiretap Codes
    2008 IEEE International Zurich Seminar on Communications, 2008
    Co-Authors: Matthieu R. Bloch, Rajesh Narasimha, Stephen Mclaughlin
    Abstract:

    We propose a method to design attack-resistant Client-Server Architectures based on wiretap codes. We show that by appropriately spreading messages across different packets a Client-Server Architecture under active attack can be modeled as a passive wiretap channel. The secrecy capacity of this equivalent wiretap channel is then used as an optimization metric to limit the impact of the attacks.

Xiong Zhong-yang - One of the best experts on this subject based on the ideXlab platform.

  • An MIS security strategy based on client/server Architecture
    Proceedings Fourth International Conference Exhibition on High Performance Computing in the Asia-Pacific Region, 2000
    Co-Authors: Zhang Yu-fang, Xiong Zhong-yang
    Abstract:

    Information security is always a major problem for administrators and computer professionals in MIS (management information systems). It is becoming more severe, especially in today's networked environments. Either the manager or the computer professional staff have exhausted various methods for solving this problem. Generally speaking, information security is a composite and systematic problem, which should be considered from every aspect of MIS. Besides controlling data access on the database, we need to plan overall, from system network level to MIS application level, and to formulate a complete MIS system security control strategy. The article presents a study of MIS system security based on the client/server Architecture. It gives the data and system security strategies and methods in database, computer network, and MIS application levels.