The Experts below are selected from a list of 174204 Experts worldwide ranked by ideXlab platform

Milad Mohammadi Darani - One of the best experts on this subject based on the ideXlab platform.

  • modeling the evolution of system Technology performance when Component and system Technology performances interact commensalism and amensalism
    Technological Forecasting and Social Change, 2017
    Co-Authors: Guanglu Zhang, Daniel A Mcadams, Venkatesh Shankar, Milad Mohammadi Darani
    Abstract:

    Abstract The interaction between technologies critically determines Technology evolution. Commensalism and amensalism are two common relationships between Component and system technologies but have attracted scant research attention. In both the relationships, the Component Technology performance is unaffected by the system Technology performance. However, as the Component Technology performance improves, the system Technology performance is enhanced in commensalism but inhibited in amensalism. We model commensalism and amensalism and predict the evolution of system Technology performance using Lotka-Volterra equations. In these two scenarios, we decouple the equations and derive the general analytic solution for system Technology performance. We also deduce the corresponding solutions for cases where the Component Technology performance follows a logistic function or simple exponential growth. The solutions consider the impact on system Technology performance of changes in Component Technology performance and enable us to predict the future performance evolution of system Technology. We demonstrate the prediction accuracy of our model through an empirical study of the concrete skyscraper Technology. We also interpret the parameters in Lotka-Volterra equations and explore strategies to boost system Technology performance. The analytic solutions and parameter interpretations allow practitioners and policy makers to use our model as a strategic management tool for their future work.

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

  • a Component library information model supporting web service Components description
    International Conference on Mechatronics and Automation, 2012
    Co-Authors: Liao Yajing, Guo Min
    Abstract:

    Component description plays an important role in the management of Components. With the evolution of the Component Technology and Web techniques, more Web Service Components become available. UDDI, as Web Services registration and discovery, has the limitations of descriptions and management of Components. Thus, a Component library information model supporting description of Web Services Component is proposed in this paper. On the basis of describing the information required for the management of Components, essential features are incorporated for describing Web Service Component, and the information required for the management of Components is extended to the UDDI for effective and comprehensive descriptions of Components in this model, which can better support the descriptions and management of Web Service, and improve the reuse rate of Components.

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

  • modeling the evolution of system Technology performance when Component and system Technology performances interact commensalism and amensalism
    Technological Forecasting and Social Change, 2017
    Co-Authors: Guanglu Zhang, Daniel A Mcadams, Venkatesh Shankar, Milad Mohammadi Darani
    Abstract:

    Abstract The interaction between technologies critically determines Technology evolution. Commensalism and amensalism are two common relationships between Component and system technologies but have attracted scant research attention. In both the relationships, the Component Technology performance is unaffected by the system Technology performance. However, as the Component Technology performance improves, the system Technology performance is enhanced in commensalism but inhibited in amensalism. We model commensalism and amensalism and predict the evolution of system Technology performance using Lotka-Volterra equations. In these two scenarios, we decouple the equations and derive the general analytic solution for system Technology performance. We also deduce the corresponding solutions for cases where the Component Technology performance follows a logistic function or simple exponential growth. The solutions consider the impact on system Technology performance of changes in Component Technology performance and enable us to predict the future performance evolution of system Technology. We demonstrate the prediction accuracy of our model through an empirical study of the concrete skyscraper Technology. We also interpret the parameters in Lotka-Volterra equations and explore strategies to boost system Technology performance. The analytic solutions and parameter interpretations allow practitioners and policy makers to use our model as a strategic management tool for their future work.

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

  • owl based web service Component
    Computer Engineering, 2005
    Co-Authors: Shen Jianjing
    Abstract:

    Based on Component Technology, a method of OWL-based Web service was proposed. Combined with atom-Component and ontology, the Web service Component granularity became a single function Component. The application of OWL and ontology improved Web service at information and knowledge.

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

  • a Component library information model supporting web service Components description
    International Conference on Mechatronics and Automation, 2012
    Co-Authors: Liao Yajing, Guo Min
    Abstract:

    Component description plays an important role in the management of Components. With the evolution of the Component Technology and Web techniques, more Web Service Components become available. UDDI, as Web Services registration and discovery, has the limitations of descriptions and management of Components. Thus, a Component library information model supporting description of Web Services Component is proposed in this paper. On the basis of describing the information required for the management of Components, essential features are incorporated for describing Web Service Component, and the information required for the management of Components is extended to the UDDI for effective and comprehensive descriptions of Components in this model, which can better support the descriptions and management of Web Service, and improve the reuse rate of Components.