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    • 3. 发明申请
    • SYSTEM AND METHOD TO VALIDATE AND REPAIR PROCESS FLOW DRAWINGS
    • 用于验证和修复流程图的系统和方法
    • US20120066662A1
    • 2012-03-15
    • US12879396
    • 2010-09-10
    • Tian-Jy ChaoPankaj DhooliaDavid MarstonDebdoot Mukherjee
    • Tian-Jy ChaoPankaj DhooliaDavid MarstonDebdoot Mukherjee
    • G06F9/44
    • G06F8/10G06F11/3604G06Q10/06
    • Disclosed is a system and method for validating and repairing flow diagrams using a process modeling validation method in conjunction with a process modeling repair method. The process modeling validation method points out structural ambiguities in a flow diagram that can make its automatic interpretation difficult. It also proposes fix to resolve such ambiguities. The method discloses a process semantic annotation scheme that can interpret process semantics in a flow graph implicit in a flow diagram. Further, the validation process compares one or more components of one or more drawings to a set of rules determined by a business process modeling standards and provides a set of semantic errors describing faulty parts of the drawing that do not comply with the business process modeling standards. The process modeling repair method corrects the drawing to ease and enable its automatic interpretation of the flow diagram and make the faulty parts of the drawing comply with the business process modeling standards.
    • 公开了一种使用过程建模验证方法结合过程建模修复方法验证和修复流程图的系统和方法。 流程建模验证方法指出流程图中的结构模糊性,可以使其自动解释变得困难。 它还提出解决方案来解决这种模糊。 该方法公开了可以解释流程图中隐含的流程图中的过程语义的过程语义注释方案。 此外,验证过程将一个或多个附图的一个或多个组件与由业务流程建模标准确定的一组规则进行比较,并且提供一组语义错误,描述不符合业务流程建模标准的图纸的错误部分 。 流程建模修复方法校正图纸以简化并使其自动解释流程图,并使图形的有缺陷的部分符合业务流程建模标准。
    • 4. 发明授权
    • System and method to validate and repair process flow drawings
    • 验证和修复流程图的系统和方法
    • US08578346B2
    • 2013-11-05
    • US12879396
    • 2010-09-10
    • Tian-Jy ChaoPankaj DhooliaDavid MarstonDebdoot Mukherjee
    • Tian-Jy ChaoPankaj DhooliaDavid MarstonDebdoot Mukherjee
    • G06F9/44
    • G06F8/10G06F11/3604G06Q10/06
    • Disclosed is a system and method for validating and repairing flow diagrams using a process modeling validation method in conjunction with a process modeling repair method. The process modeling validation method points out structural ambiguities in a flow diagram that can make its automatic interpretation difficult. It also proposes fix to resolve such ambiguities. The method discloses a process semantic annotation scheme that can interpret process semantics in a flow graph implicit in a flow diagram. Further, the validation process compares one or more components of one or more drawings to a set of rules determined by a business process modeling standards and provides a set of semantic errors describing faulty parts of the drawing that do not comply with the business process modeling standards. The process modeling repair method corrects the drawing to ease and enable its automatic interpretation of the flow diagram and make the faulty parts of the drawing comply with the business process modeling standards.
    • 公开了一种使用过程建模验证方法结合过程建模修复方法验证和修复流程图的系统和方法。 流程建模验证方法指出流程图中的结构模糊性,可以使其自动解释变得困难。 它还提出解决方案来解决这种模糊。 该方法公开了可以解释流程图中隐含的流程图中的过程语义的过程语义注释方案。 此外,验证过程将一个或多个附图的一个或多个组件与由业务流程建模标准确定的一组规则进行比较,并且提供一组语义错误,描述不符合业务流程建模标准的图纸的错误部分 。 流程建模修复方法校正图纸以简化并使其自动解释流程图,并使图形的有缺陷的部分符合业务流程建模标准。
    • 5. 发明授权
    • Performance-aware enterprise components
    • 性能敏感的企业组件
    • US09251491B2
    • 2016-02-02
    • US12627071
    • 2009-11-30
    • Tian Jy ChaoPankaj DhooliaFenno F. Heath, IIISanthosh KumaranShao Chun LiFlorian PinelSreeram Ramakrishnan
    • Tian Jy ChaoPankaj DhooliaFenno F. Heath, IIISanthosh KumaranShao Chun LiFlorian PinelSreeram Ramakrishnan
    • G06Q10/00G06Q10/06G06F11/34G06Q10/10
    • G06Q10/0639G06F11/3409G06F2201/865G06Q10/06G06Q10/10
    • Techniques for generating and executing a performance-aware enterprise component (PAEC) are provided. The techniques include creating a performance-aware enterprise component definition, wherein an enterprise component is a component with defined behavior and data models that represent an enterprise capability and provide a service to a client through a defined interface, and wherein the definition comprises an extensible markup language file comprising process component lifecycle information, one or more data items to be used in the component lifecycle, and one or more performance metrics, and executing the performance-aware enterprise component, wherein executing the performance-aware enterprise component comprises reading the performance-aware enterprise component definition and one or more relationships with the one or more data items, and operating the component lifecycle, wherein operating the component lifecycle comprises using the one or more performance metrics within the component lifecycle to enable one or more localized changes to be made within the enterprise component.
    • 提供了生成和执行性能感知企业组件(PAEC)的技术。 这些技术包括创建一个表现感知企业组件定义,其中企业组件是具有定义的行为和数据模型的组件,其表示企业能力,并通过定义的界面向客户端提供服务,并且其中定义包括可扩展标记 语言文件,其包括过程组件生命周期信息,要在组件生命周期中使用的一个或多个数据项,以及一个或多个性能度量,以及执行所述性能感知企业组件,其中执行所述性能感知企业组件包括: 意识到企业组件定义和与一个或多个数据项的一个或多个关系以及操作组件生命周期,其中操作组件生命周期包括使用组件生命周期内的一个或多个性能度量来启用一个或多个局部变化 在企业组件内。
    • 6. 发明申请
    • Performance-Aware Enterprise Components
    • 性能感知企业组件
    • US20110131080A1
    • 2011-06-02
    • US12627071
    • 2009-11-30
    • Tian Jy ChaoPankaj DhooliaFenno F. Heath, IIISanthosh KumaranShao Chun LiFlorian PinelSreeram Ramakrishnan
    • Tian Jy ChaoPankaj DhooliaFenno F. Heath, IIISanthosh KumaranShao Chun LiFlorian PinelSreeram Ramakrishnan
    • G06Q10/00
    • G06Q10/0639G06F11/3409G06F2201/865G06Q10/06G06Q10/10
    • Techniques for generating and executing a performance-aware enterprise component (PAEC) are provided. The techniques include creating a performance-aware enterprise component definition, wherein an enterprise component is a component with defined behavior and data models that represent an enterprise capability and provide a service to a client through a defined interface, and wherein the definition comprises an extensible markup language file comprising process component lifecycle information, one or more data items to be used in the component lifecycle, and one or more performance metrics, and executing the performance-aware enterprise component, wherein executing the performance-aware enterprise component comprises reading the performance-aware enterprise component definition and one or more relationships with the one or more data items, and operating the component lifecycle, wherein operating the component lifecycle comprises using the one or more performance metrics within the component lifecycle to enable one or more localized changes to be made within the enterprise component.
    • 提供了生成和执行性能感知企业组件(PAEC)的技术。 这些技术包括创建一个表现感知企业组件定义,其中企业组件是具有定义的行为和数据模型的组件,其表示企业能力,并通过定义的界面向客户端提供服务,并且其中定义包括可扩展标记 语言文件,其包括过程组件生命周期信息,要在组件生命周期中使用的一个或多个数据项,以及一个或多个性能度量,以及执行所述性能感知企业组件,其中执行所述性能感知企业组件包括: 意识到企业组件定义和与一个或多个数据项的一个或多个关系以及操作组件生命周期,其中操作组件生命周期包括使用组件生命周期内的一个或多个性能度量来启用一个或多个局部变化 在企业组件内。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR ADDRESSING NON-FUNCTIONAL CONCERNS
    • 解决非功能性问题的方法和系统
    • US20080270087A1
    • 2008-10-30
    • US11741555
    • 2007-04-27
    • Pankaj DhooliaPrashant JainKamal Bhattacharya
    • Pankaj DhooliaPrashant JainKamal Bhattacharya
    • G06F7/60
    • G06Q10/06
    • Non-functional concerns are addressed within an abstract model corresponding to a real-world system. One or more annotations profiles are constructed. Each annotations profile describes one or more annotations, where each annotation corresponds to and represents one of the non-functional concerns. Each of a number of modeling elements of the abstract model is associated with an annotation corresponding to a non-functional concern pertaining to the modeling element. One or more transformation templates are constructed. Each transformation template transforms the abstract model to a specific implementation platform to which the transformation template corresponds. For each transformation template, the abstract model as has been transformed to the specification implementation platform to which the transformation template corresponds is executed. Such execution results in consumption of the non-functional concerns represented by the annotations associated with the modeling elements.
    • 在与真实世界系统相对应的抽象模型中解决非功能性问题。 构建一个或多个注释简档。 每个注释配置文件描述一个或多个注释,其中每个注释对应于并表示非功能关注之一。 抽象模型的多个建模元素中的每一个与对应于与建模元素有关的非功能性关注的注释相关联。 构建一个或多个转换模板。 每个变换模板将抽象模型转换为转换模板对应的特定实现平台。 对于每个转换模板,已经转换为转换模板对应的规范实现平台的抽象模型被执行。 这种执行导致消耗由与建模元素相关联的注释表示的非功能关注。
    • 10. 发明授权
    • Method and system for addressing non-functional concerns
    • 解决非功能性问题的方法和系统
    • US07937250B2
    • 2011-05-03
    • US11741555
    • 2007-04-27
    • Pankaj DhooliaPrashant JainKamal Bhattacharya
    • Pankaj DhooliaPrashant JainKamal Bhattacharya
    • G06F17/10
    • G06Q10/06
    • Non-functional concerns are addressed within an abstract model corresponding to a real-world system. One or more annotations profiles are constructed. Each annotations profile describes one or more annotations, where each annotation corresponds to and represents one of the non-functional concerns. Each of a number of modeling elements of the abstract model is associated with an annotation corresponding to a non-functional concern pertaining to the modeling element. One or more transformation templates are constructed. Each transformation template transforms the abstract model to a specific implementation platform to which the transformation template corresponds. For each transformation template, the abstract model as has been transformed to the specification implementation platform to which the transformation template corresponds is executed. Such execution results in consumption of the non-functional concerns represented by the annotations associated with the modeling elements.
    • 在与真实世界系统相对应的抽象模型中解决非功能性问题。 构建一个或多个注释简档。 每个注释配置文件描述一个或多个注释,其中每个注释对应于并表示非功能关注之一。 抽象模型的多个建模元素中的每一个与对应于与建模元素有关的非功能性关注的注释相关联。 构建一个或多个转换模板。 每个变换模板将抽象模型转换为转换模板对应的特定实现平台。 对于每个转换模板,已经转换为转换模板对应的规范实现平台的抽象模型被执行。 这种执行导致消耗由与建模元素相关联的注释表示的非功能关注。