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    • 1. 发明授权
    • Seamless morphing from scenario model to system-based instance visualization
    • 从场景模型到基于系统的实例可视化的无缝变形
    • US09070097B2
    • 2015-06-30
    • US13326279
    • 2011-12-14
    • Jochen MayerleJohan Christiaan PetersMarianne BroscheJoachim FesslerUlrich KeilHolger Knospe
    • Jochen MayerleJohan Christiaan PetersMarianne BroscheJoachim FesslerUlrich KeilHolger Knospe
    • G06F3/048G06Q10/06
    • G06Q10/06
    • A single meta-model can include metadata defining a business scenario landscape that includes business scenarios accessible to members of an organization that are supported by a business software architecture. The metadata can include business process definitions and relationships between business processes. A user interface can present first, second, and/or third visualization layers based on the metadata. The first visualization layer can include first user interface elements forming a business scenario landscape map showing business scenarios and at least one relationship between the business scenarios. The second visualization layer can include second user interface elements displayed in a navigation pane concurrently with a work pane. The second user interface elements can represent a linear sequence of second business processes of a business scenario while the work pane can include additional user interface elements corresponding to functionality provided by the business software architecture relating to a currently selected business process.
    • 单个元模型可以包括定义业务场景景观的元数据,其中包括业务软件架构支持的组织成员可访问的业务场景。 元数据可以包括业务流程定义和业务流程之间的关系。 用户界面可以基于元数据呈现第一,第二和/或第三可视图层。 第一可视化层可以包括形成商业场景景观地图的第一用户界面元素,其显示业务场景和业务场景之间的至少一个关系。 第二可视化层可以包括与工作窗格同时显示在导航窗格中的第二用户界面元素。 第二用户界面元素可以表示业务场景的第二业务流程的线性序列,而工作窗格可以包括对应于与当前选择的业务过程相关的业务软件体系结构提供的功能的附加用户界面元素。
    • 7. 发明授权
    • Inferring rules to classify objects in a file management system
    • 推导规则对文件管理系统中的对象进行分类
    • US08099419B2
    • 2012-01-17
    • US12339070
    • 2008-12-19
    • Johan Christiaan Peters
    • Johan Christiaan Peters
    • G06F7/00
    • G06F17/30115
    • Described are methods and systems related to inferring rules to classify an object to one of one or more target folders. One or more properties of the object to be classified are determined. A first degree of affinity between the object to be classified and the objects of the target folders, having a property identical to the object to be classified, is computed. A second degree of affinity between the object to be classified and the objects within each target folder, having a property identical to the object to be classified, is computed. A total degree of affinity between the object to be classified and each target folder is calculated. A normalized total degree of affinity is calculated by averaging the total degree of affinity across all target folders. The object is moved to a target folder having a highest value of the normalized total degree of affinity.
    • 描述了与推断用于将对象分类到一个或多个目标文件夹之一的规则相关的方法和系统。 确定要分类对象的一个​​或多个属性。 计算要分类的对象与目标文件夹的对象之间的第一程度的关联性,具有与待分类的对象相同的属性。 计算要分类对象与每个目标文件夹中具有与被分类对象相同的属性的对象之间的第二程度的亲和度。 计算要分类的对象与每个目标文件夹之间的总的亲和度。 通过对所有目标文件夹的总亲和度进行平均来计算归一化的亲和度。 将对象移动到具有归一化的总亲和度的最高值的目标文件夹。
    • 10. 发明申请
    • DYNAMIC USER INTERFACE LAYOUT ALGORITHM
    • 动态用户界面布局算法
    • US20150295996A1
    • 2015-10-15
    • US14249089
    • 2014-04-09
    • Johan Christiaan Peters
    • Johan Christiaan Peters
    • H04L29/08G06F3/0481H04L29/06
    • H04L67/10G06F3/0481G06F9/451H04L67/42
    • The present disclosure describes methods, systems, and computer program products for generating user interface layouts. One computer-implemented method includes dividing an available vertical space associated with a graphical user interface into a plurality of allowed vertical space allocations based on a priority of a plurality of data display fields, calculating, by a computer, slack following each data display field expanding to fill an allowed vertical space allocation associated with the data display fields, allocating the slack among the plurality of data display fields, re-calculating, by a computer, slack following allocation of slack among the plurality of data display fields, and finalizing display of the plurality of data display elements in the graphical user interface.
    • 本公开描述了用于生成用户界面布局的方法,系统和计算机程序产品。 一种计算机实现的方法包括基于多个数据显示区域的优先级将与图形用户界面相关联的可用垂直空间划分为多个允许的垂直空间分配,由计算机根据每个数据显示区域展开后的松弛计算 填充与数据显示区域相关联的允许的垂直空间分配,在多个数据显示区域中分配松弛,由计算机重新计算在多个数据显示区域中的松弛分配之后松弛,并且最终显示 图形用户界面中的多个数据显示元件。