用户名: 密码: 验证码:
A service composition model based on user experience in Ubi-cloud comp
详细信息    查看全文
  • 作者:Hwa-Young Jeong ; Gangman Yi ; Jong Hyuk Park
  • 关键词:User experience ; Ubiquitous cloud computing ; SaaS ; Service based application ; Service composition
  • 刊名:Telecommunication Systems
  • 出版年:2016
  • 出版时间:April 2016
  • 年:2016
  • 卷:61
  • 期:4
  • 页码:897-907
  • 全文大小:1,562 KB
  • 参考文献:1.Gnanaraj, Jaspher Willsie, Ezra, Kirubakaran, & Rajsingh, Elijah. (2013). Smart card based time efficient authentication scheme for global grid computing. Human-centric Computing and Information Science, 3, 16.CrossRef
    2.Tsai, Joseph C., & Yen, Neil Y. (2013). Cloud-empowered multimedia service: An automatic video storytelling tool. Journal of Convergence, 4(3), 13–19.
    3.Kim, Jungsun Sunny, Byun, Jeuongwoo, & Jeong, Hwayoung. (2013). Cloud AEHS: Advanced learning system using user preferences. Journal of Convergence, 4(3), 31–36.
    4.Armbrust, M., Fox, A., Griffith, R., Joseph, A. D., Katz, R., Konwinski, A., et al. (2010). A view of cloud computing. Communications of the ACM, 53, 50–58.
    5.Volchkov, A. (2002). Server-based computing opportunities. IT Professional, 4(2), 18–23.CrossRef
    6.Zhao, Y., Raicu, I., & Lu, S. (2008). Cloud computing and grid computing 360-degree compared grid computing environments workshop. New York: GCE ’08.
    7.Sadashiv, N. & Kumar, S.M.D. (2011). Cluster, grid and cloud computing: A detailed comparison The 6th International Conference on Computer Science & Education (ICCSE 2011) (pp. 477–482), August 3–5. Singapore: SuperStar Virgo.
    8.Gutierrez-Garcia, J. O., & Sim, K. M. (2013). Agent-based cloud service composition. Applied Intelligence, 38(3), 436–464.CrossRef
    9.Zeng, C., Guo, X., Ou, W., & Han, D. (2009). Cloud computing service composition and search based on semantic. Lecture Notes in Computer Science, 5931, 290–300.CrossRef
    10.Kwon, J., Park, K., Lee, D., & Lee, S. (2007). PSR: Pre-computing solutionsin RDBMS for fast web, service composition search. New York: ICWS.
    11.Utkarsh, S., Kamesh, M., Jennifer, W., & Rajeev, M. (2006). Query optimization over web services. In: VLDB ’06 Proceedings of the 32nd International Conference on Very large data bases (pp. 355–366.
    12.Rao, J., & Su, X. (2005). A survey of automated web service composition methods. Lecture Notes in Computer Science, 3387, 43–54.CrossRef
    13.Ardagna, D. (2007). Adaptive service composition in flexible processes. Software Engineering IEEE Transactions, 33(6), 369–384.CrossRef
    14.International Organization for Standardization. (2010). Ergonomics of human system interaction-Part 210: Human-centered design for interactive systems. ISO 9241–210, 2010. http://​www.​iso.​org/​iso/​catalogue_​detail.​htm?​csnumber=​52075 .
    15.Morville, P. (2005). Ambient findability: What we find changes who we become. Sebastopol: O’Reilly Media, Inc.
    16.Stefani, Antonia, & Xenos, Michalis. (2011). Weight-modeling of B2C system quality. Computer Standards & Interfaces, 33, 411–421.CrossRef
    17.Raza, Arif, Capretz, Luiz Fernando, & Ahmed, Faheem. (2012). An open source usability maturity model (OS-UMM). Computers in Human Behavior, 28, 1109–1121.CrossRef
  • 作者单位:Hwa-Young Jeong (1)
    Gangman Yi (2)
    Jong Hyuk Park (3)

    1. Humanitas College, Kyung Hee University, Seoul, Republic of Korea
    2. Department of Computer Engineering, Gangneung-Wonju National University, Gangneung-si, Republic of Korea
    3. Department of Computer Science and Engineering, SeoulTech, Seoul, Republic of Korea
  • 刊物类别:Business and Economics
  • 刊物主题:Economics
    Business Information Systems
    Computer Communication Networks
    Artificial Intelligence and Robotics
    Probability Theory and Stochastic Processes
  • 出版者:Springer Netherlands
  • ISSN:1572-9451
文摘
The ubiquitous cloud computing environment supports software as service that allows for an efficient usage by the developer, user, and manager. But within ubiquitous cloud computing, numerous services are being provided by various service providers, making it difficult for the developer to find the service needed for system development or to apply and adopt it during development. In this paper, we propose a service composition model based on user experience where the user can find the type of service that he needs, construct a composition and apply it to the overall system development. The proposed model has three factors: service characteristics, personal information, and user preference. The service characteristics to apply the most appropriate service that the user intends to apply was taken into consideration, personal information that takes into account individual characteristics of the user and a user preference that takes into account the preferred parts in the field that the user seeks to develop was applied. To evaluate the suggested method, 100 people were recruited and surveyed on user satisfaction. The result shows that the proposed method performed better than the existing methods.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700