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    • 6. 发明授权
    • Secure sharing of LOB bound information in client applications
    • 在客户端应用程序中安全地共享LOB绑定信息
    • US07707298B2
    • 2010-04-27
    • US11746757
    • 2007-05-10
    • Rakesh GuptaShyam J. SundarNamendra KumarBurra Gopal
    • Rakesh GuptaShyam J. SundarNamendra KumarBurra Gopal
    • G06F15/16G06F15/173
    • G06Q10/10
    • Secure sharing of bound information is enabled in client applications associated with a backend LOB service. Bound item IDs are assigned to newly created bound items by a client, the items synchronized with the LOB system, a correlation ID received in response to the synchronization, and the two IDs mapped. A reverse sequence of actions is performed when the LOB service creates the bound item. In response to an attempt by a client to exchange bound information, the item is placed in a pending state and allowed to be received by a receiver upon successful completion of data transfer and LOB system permission of the exchange passing the bound item ID and the correlation ID. If the LOB system rejects the exchange, the item is placed in an unbound state and the receiver not allowed to receive the bound information.
    • 在与后台LOB服务相关联的客户端应用程序中启用绑定信息的安全共享。 绑定项目ID由客户端分配给新创建的绑定项目,与LOB系统同步的项目,响应于同步接收的相关ID和映射的两个ID。 当LOB服务创建绑定的项目时,执行相反的动作序列。 响应于客户端尝试交换绑定信息,该项目被置于待处理状态,并且在成功完成数据传输并允许通过绑定项目ID的交换机的LOB系统许可和相关性 ID。 如果LOB系统拒绝交换,则该项目处于未绑定状态,并且接收方不允许接收绑定的信息。
    • 8. 发明申请
    • Context-Aware Management of Shared Composite Data
    • 共享复合数据的上下文感知管理
    • US20100211545A1
    • 2010-08-19
    • US12372631
    • 2009-02-17
    • Manish SoniJagdish SinghBurra GopalSander M. Viegers
    • Manish SoniJagdish SinghBurra GopalSander M. Viegers
    • G06F17/30
    • G06F17/30575
    • Embodiments provide information composition management features and functionality to manage composite information, but are not so limited. In an embodiment, a computing system can include functionality to provide a composition of informational data that can be used to identify and manage aspects of shared and other data that can be associated with distinct information sources. In one embodiment, a computing platform includes a client that can be configured to access and use information of a plurality of independent sources to create a data composition that includes aspects of shared and unshared data portions and manage data changes of the data composition including managing issues associated with one or more of the plurality of independent sources. Other embodiments are described and available.
    • 实施例提供用于管理复合信息的信息组合管理特征和功能,但不限于此。 在一个实施例中,计算系统可以包括提供可用于识别和管理可以与不同信息源相关联的共享和其他数据的方面的信息数据的组合的功能。 在一个实施例中,计算平台包括可被配置为访问和使用多个独立源的信息以创建包括共享和非共享数据部分的方面的数据组合的客户端,并且管理包括管理问题的数据组合的数据变化 与所述多个独立源中的一个或多个相关联。 其他实施例被描述和可用。
    • 9. 发明申请
    • Sharing An Object Among Multiple Applications
    • 共享多个应用程序中的对象
    • US20090300649A1
    • 2009-12-03
    • US12130568
    • 2008-05-30
    • Burra GopalSander M. ViegersJeff KeyesChris Alan KeyserJagdish Singh
    • Burra GopalSander M. ViegersJeff KeyesChris Alan KeyserJagdish Singh
    • G06F9/46
    • G06F9/543G06F9/52
    • Allowing multiple software applications to share an object of an application system is provided. Each of the multiple software applications is associated with a line of business (LOB) system and is associated with a solution ID. The application system may receive a request to establish a first binding between the object and a first LOB entity instance for a first software application. The first binding between the object and the first LOB entity instance may then be established. The application system may further receive a request to establish a second binding between the object and a second LOB entity instance for a second software application. The second binding between the object and the second LOB entity instance will be established when the first and second software applications have matching solution IDs and compatible sharing levels to the object. The application system may therefore establish user interface and data sharing between the first and second LOB entity instances in the object.
    • 提供允许多个软件应用程序共享应用系统的对象。 多个软件应用程序中的每一个都与业务线(LOB)系统相关联,并与解决方案ID相关联。 应用系统可以接收建立用于第一软件应用的对象和第一LOB实体实例之间的第一绑定的请求。 然后可以建立对象和第一LOB实体实例之间的第一个绑定。 应用系统还可以接收建立用于第二软件应用的对象与第二LOB实体实例之间的第二绑定的请求。 当第一和第二软件应用程序具有匹配的解决方案ID和对象的兼容共享级别时,将建立对象和第二LOB实体实例之间的第二绑定。 因此,应用系统可以在对象中的第一和第二LOB实体实例之间建立用户界面和数据共享。
    • 10. 发明申请
    • Detecting and managing changes in business data integration solutions
    • 检测和管理业务数据集成解决方案的变更
    • US20080071844A1
    • 2008-03-20
    • US11521709
    • 2006-09-15
    • Burra GopalOleg Gregory OvanesyanRahul KapoorParul ManekSandhya JainMuthiah K. AnnamalaiSharon E. EdelsteinPeiwei CaoAlexandru Croicu
    • Burra GopalOleg Gregory OvanesyanRahul KapoorParul ManekSandhya JainMuthiah K. AnnamalaiSharon E. EdelsteinPeiwei CaoAlexandru Croicu
    • G06F17/30
    • G06F17/30563
    • Methods, systems, and computer program products detect and manage changes in business data integration (BDI) solutions. BDI solutions include extracting, mapping, or loading source information from disparate sources as targets presented to business applications that consume targets. A method involves detecting changes in a BDI solution, classifying each of the changes based on change severity, analyzing what objects would be impacted by the changes, determining whether the objects impacted by the changes can be change handled without user intervention, and change handling without user intervention all the objects impacted by changes that are not severe. Still further, the method involves committing changes to a metadata repository and creating a deployable checkpoint of the metadata repository where the deployable checkpoint is consistent for all the changes handled in the BDI solution. The modularized metadata describes an end-to-end information flow and underlying dependencies between the source information, mappings, targets and business applications.
    • 方法,系统和计算机程序产品检测和管理业务数据集成(BDI)解决方案的变化。 BDI解决方案包括从不同来源提取,映射或加载源信息,作为呈现给消费目标的业务应用程序的目标。 一种方法包括检测BDI解决方案中的变化,根据变化严重程度对每个变更进行分类,分析哪些对象会受到变更的影响,确定受变更影响的对象是否可以在不需要用户干预的情况下进行变更, 用户干预所有受到不严重变化影响的对象。 此外,该方法涉及对元数据存储库进行更改并创建元数据存储库的可部署检查点,其中可部署检查点对于在BDI解决方案中处理的所有更改是一致的。 模块化元数据描述了源信息,映射,目标和业务应用程序之间的端到端信息流和底层依赖关系。