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Graphical and logical formalisms for business process modeling and verification

机译:用于业务流程建模和验证的图形和逻辑形式主义

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摘要

Process models are an essential component of business process management and are found in various information systems such as workflow management systems, enterprise resource planning systems, and supply chain management systems. Process modeling and analysis are key steps in business process management. However, most existing activity-based process modeling paradigms found in process management tools lack a mathematical formalism, have limited expressive power, or have little analytical capability. Consequently, process modeling and analysis in the industry remain an art rather than a science. In this dissertation, we first propose a logic-based workflow verification approach by applying propositional logic with constraints to verifying the correctness of both acyclic and cyclic workflow models. We demonstrate that this approach is capable of detecting process anomalies in workflow models. We then propose process graphs as a graphical and mathematical tool for business process modeling and analysis. We formally define the syntax and semantics of process graphs and their constructs. We show that process graphs can not only model all types of execution order of activities, but also support multi-level abstraction, modular modeling, and analysis of the correctness of process models. We apply process graphs to defining and classifying process anomalies, and demonstrate that the proper use of process graphs can prevent certain process anomalies. We also propose process logic as a logical formalism and mathematical method to represent process models for the purpose of process verification. We formally define the syntax and semantics of process logic to reflect the characteristics of process structures in a more precise way. We establish a formal relationship between process logic and graphical representations of process models, and transform the problem of verifying the correctness of process models into the problem of determining the validity of process argument forms in process logic. We demonstrate that process logic can be used to verify completely the correctness of activity-based process models. Process graphs and process logic provide a theoretical foundation for the modeling, analysis, and verification of activity-based process models that are most widely used in the applications of business process management.
机译:流程模型是业务流程管理的重要组成部分,可以在各种信息系统中找到,例如工作流管理系统,企业资源计划系统和供应链管理系统。流程建模和分析是业务流程管理中的关键步骤。但是,在过程管理工具中发现的大多数现有的基于活动的过程建模范例都缺乏数学上的形式主义,表达能力有限,或者分析能力很弱。因此,行业中的过程建模和分析仍然是一门艺术,而不是一门科学。在本文中,我们首先提出了一种基于逻辑的工作流验证方法,该方法通过应用命题逻辑和约束条件来验证非循环和循环工作流模型的正确性。我们证明了这种方法能够检测工作流模型中的流程异常。然后,我们提出将流程图作为业务流程建模和分析的图形和数学工具。我们正式定义过程图及其构造的语法和语义。我们展示了过程图不仅可以对活动的所有类型的执行顺序进行建模,而且还可以支持多级抽象,模块化建模以及过程模型的正确性分析。我们将过程图应用于定义和分类过程异常,并证明适当使用过程图可以防止某些过程异常。我们还提出了过程逻辑,以逻辑形式主义和数学方法来表示过程模型,以进行过程验证。我们正式定义过程逻辑的语法和语义,以更精确的方式反映过程结构的特征。我们在过程逻辑和过程模型的图形表示之间建立形式关系,并将验证过程模型正确性的问题转变为确定过程逻辑中过程参数形式的有效性的问题。我们证明了流程逻辑可用于完全验证基于活动的流程模型的正确性。流程图和流程逻辑为基于活动的流程模型的建模,分析和验证提供了理论基础,而基于活动的流程模型在业务流程管理的应用程序中使用最为广泛。

著录项

  • 作者

    Bi Henry Haidong;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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