计算机科学 ›› 2020, Vol. 47 ›› Issue (6A): 572-576.doi: 10.11896/JsJkx.190900114

• 交叉&应用 • 上一篇    下一篇

基于图论的组织互操作性建模与评估研究

高琳, 段国林, 姚涛   

  1. 河北工业大学机械学院 天津 300401
  • 发布日期:2020-07-07
  • 通讯作者: 段国林(glduan@hebut.edu.cn)
  • 作者简介:gltzf@126.com
  • 基金资助:
    国家自然科学基金(51775166);河北省自然科学基金(F2014202241)

Research on Organizational Interoperability Modeling and Evaluation Based on Graph Theory

GAO Lin, DUAN Guo-lin and YAO Tao   

  1. School of Mechanical Engineering,Hebei University of Technology,TianJin 300401,China
  • Published:2020-07-07
  • About author:GAO Lin, Ph.D candidate.His main research interests include informatization of manufacturing industry and enterprise interoperability.
    DAUN Guo-lin, Ph.D, professor, Ph.D supervisor.His main research interests include informatization of manufactu-ring industry and CAD/CAM.
  • Supported by:
    This work was supported by the National Natural Science Foundation,China(51775166) and Natural Science Foundation of Hebei Province(F2014202241).

摘要: 为解决组织机构互操作性的建模与评估等问题,文中分析了国外关于图论应用和互操作性评估相关研究内容;简述图论的起源和企业互操作性的3个互操作方面;依据业务流程进行企业互操作性建模,提出了基于图论原理的互操作性模型改进方法;提出了应用于基于图论改进模型的组织互操作性规则;构建了基于图论原理、企业建模和规则3个方面互操作性的评估机制,为组织机构互操作性评估了思路。

关键词: 规则, 基于实例推理, 企业建模, 图论原理, 组织互操作性

Abstract: To solve the problems of organization interoperability modeling and evaluation,the related research contents of graph theory application and interoperability evaluation abroad are analyzed.This paper briefly introducthe origins of graph theory and three interoperable aspects of enterprise interoperability.Based on the business process,the interoperability model is modeled,and an improved method based on graph theory was proposed.An organization interoperability rule based on graph theory is proposed.An evaluation mechanism based on the interoperability of graph theory,enterprise modeling and rules is constructed,which expands the mind for the interoperability evaluation of organizations.

Key words: Case-based reasoning, Enterprise modeling, Graph theory, Organization interoperability, Rule

中图分类号: 

  • TP399
[1] MIRAFZAL S M.More odd graph theory from another point of view.Discrete Mathematics,2018,341(1):217-220.
[2] WEI W H,XIAO W J,HUANG S Q,et al.Research on the application of algebraic graph theory in parallel processing.Computer Science,2008,35(11):67-69.
[3] YAN H,LU T W.Study on the application of graph theory in pavement crack segmentation.Journal of Wuhan University of Technology,2012,34(1):53-57.
[4] SHI Z,WATANABE S,OGAWA K,et al.3-Resilience assessment methodology and fundamentals of graph theory.Structural Resilience in Sewer Reconstruction,2018:79-111.
[5] LIU Y,YU P,CHU D,et al.Stationary distribution of stochastic Markov Jump coupled systems based on graph theory.Chaos,Solitons & Fractals,2019,119(2):188-195.
[6] VECCHIO F,MIRAGLIA F,ROSSINI P M.Connectome: Graph theory application in functional brain network architecture.Clinical Neurophysiology Practice,2017,2:206-213.
[7] ESPADINHA-CRUZ P,GRILO A.The Business Interoperability Decomposition Framework to analyse buyer-supplier dyads.Computers in Industry,2019,109:165-181.
[8] TABER A,KUMAR G,FREYTAG M.A moment-vector approach to interoperable analysis.Computer-Aided Design,2018,102:139-147.
[9] REZAEI R,CHIEW T K,LEE S P,et al.Interoperability assessment:A systematic literature review.Computers in Industry,2019,106:111-132.
[10] REZAEI R,CHIEW T K,LEE S P,et al.Interoperability evalua-tion models:A systematic review.Computers in Industry,2014,65(1):1-23.
[11] PARTAL A,DUNPHY K.Cultural impact assessment:a systematic literature review of current methods and practice around the world.Impact Assessment & ProJect Appraisal,2016,34(1):1-13.
[12] SATURNO M,RAMOS L F P,POLATO F,et al.Evaluation of Interoperability between Automation Systems using Multi-criteria Methods.Procedia Manufacturing,2017,11:1837-1845.
[13] MYKKANEN J A,TUOMAINEN M P.An evaluation and selection framework for interoperability standards.Information and Software Technology,2008,50(3):176-197.
[14] PIRAYESH N A,ETIENNE A,KLEINER M,et al.Perfor-mance evaluation of collaboration in the design process:Using interoperability measurement.Computers in Industry,2015,72:14-26.
[15] DUCQ Y,CHEN D,DOUMEINGTS G.A contribution of system theory to sustainable enterprise interoperability science base.Computers in Industry,2012,63(8):844-857.
[16] CHEN D,KNOTHE T,DOUMEINGS G.POP Meta-Model for Enterprise Model Interoperability.IFAC Proceedings Vo-lumes,2009,42(4):175-180.
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