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    • 2. 发明授权
    • Providing increased quality of content to a user over time
    • 随着时间的推移,为用户提供更高的内容质量
    • US08386483B2
    • 2013-02-26
    • US12604204
    • 2009-10-22
    • John Edward BoyerPeter Alan ColdicottEdward Emile KelleyEoin Lane
    • John Edward BoyerPeter Alan ColdicottEdward Emile KelleyEoin Lane
    • G06F7/00
    • G06F17/30979G06Q10/10
    • Increasing quality of content provided to a user is provided. Communities of practice a user is associated with are determined based on login data. A corresponding set of tags is retrieved for each of the communities of practice. All corresponding sets of tags are aggregated to define a role for the user. A personal set of tags associated with the user is retrieved. The personal set of tags is added to the aggregate of all corresponding sets of tags to create a new set of tags. A context of the user in the particular task is recorded. The new set of tags is filtered based on the context to create a sub-set of tags. A defined number of tag aware information sources are queried using the sub-set of tags. Content is received from the defined number of tag aware information sources based on the query. The content is outputted.
    • 提供提供给用户的内容的质量提高。 基于登录数据确定用户关联的实践社区。 为每个实践社区检索相应的一组标签。 聚合所有对应的标签集,以定义用户的角色。 检索与用户相关联的一组个人标签。 将个人标签集添加到所有相应标签集合的集合中,以创建一组新的标签。 记录特定任务中用户的上下文。 基于上下文对新的标签集进行过滤,以创建一个标签子集。 使用标签子集来查询定义数量的标签感知信息源。 基于查询,从定义数量的标签感知信息源接收内容。 输出内容。
    • 6. 发明授权
    • Automation of software application engineering using machine learning and reasoning
    • 使用机器学习和推理的软件应用工程自动化
    • US08607190B2
    • 2013-12-10
    • US12604751
    • 2009-10-23
    • Peter Alan ColdicottRaymond Walter EllisCelso GonzalezEoin Lane
    • Peter Alan ColdicottRaymond Walter EllisCelso GonzalezEoin Lane
    • G06F9/44G06F7/00
    • G06N5/025G06F8/10G06F8/36
    • A system for automatically creating a desired software application design. In response to an input to create a desired software application design, functional requirements for the desired software application design are retrieved. Then, non-functional requirements associated with each retrieved functional requirement are retrieved. In addition, software models associated with the retrieved functional requirements are retrieved. Further, software patterns associated with the retrieved non-functional requirements are retrieved. Then, the retrieved software models are transformed into software code for the desired software application design. Also, the retrieved software patterns are applied to associated code sequences in the software code to automatically create an architecture for the desired software application design. Finally, the architecture for the desired software application design is outputted for use by a user. The decisions made during the software application design process are also captured for analysis for future improvement of the desired software application design.
    • 用于自动创建所需软件应用程序设计的系统。 响应于创建期望的软件应用程序设计的输入,检索所需软件应用程序设计的功能需求。 然后,检索与每个检索到的功能需求相关联的非功能性要求。 此外,检索与检索到的功能要求相关联的软件模型。 此外,检索与检索的非功能性要求相关联的软件模式。 然后,将所检索的软件模型转换为所需软件应用程序设计的软件代码。 此外,将所检索的软件模式应用于软件代码中的相关代码序列,以自动创建用于所需软件应用程序设计的体系结构。 最后,输出所需软件应用程序设计的架构供用户使用。 在软件应用程序设计过程中做出的决策也被捕获,以供将来改进所需软件应用程序设计。
    • 8. 发明授权
    • Semi-automatic evaluation and prioritization of architectural alternatives for data integration
    • 用于数据集成的架构备选方案的半自动评估和优先级排序
    • US08285660B2
    • 2012-10-09
    • US12479271
    • 2009-06-05
    • Peter Alan ColdicottGuenter Anton SauterMei Yang SelvageOlaf W Zimmermann
    • Peter Alan ColdicottGuenter Anton SauterMei Yang SelvageOlaf W Zimmermann
    • G06F7/00G06F17/00G06F15/177
    • G06F17/30289
    • Evaluating and prioritizing architectural design pattern alternatives for data integration is provided. A set of decision factors is derived from requirements for a system to be integrated. A default score is assigned to each decision factor based on historical data integration knowledge, and the default scores are weighted. A priority score is also assigned to each decision factor based on collected inputs from system metadata and subject matter experts in the enterprise system. Next, an individual consolidated score for each decision factor is calculated using the default score, the weighted score, and the priority score, and a total consolidated score is calculated from the individual consolidated scores for the architecture design pattern. The total consolidated score for the architecture design pattern may be compared against total consolidated scores for other architecture design patterns to determine a suitable candidate architecture design pattern for data integration.
    • 提供了用于数据集成的架构设计模式替代方案的评估和优先级。 一系列决策因素来源于要整合的系统的要求。 基于历史数据集成知识将每个决策因素分配给默认分数,并对默认分数进行加权。 根据企业系统中系统元数据和主题专家的收集输入,还将优先级分配给每个决策因素。 接下来,使用默认分数,加权分数和优先级分数来计算每个决策因素的个人合并分数,并根据架构设计模式的各个综合分数计算总合并分数。 可以将架构设计模式的总综合得分与其他架构设计模式的总合并分数进行比较,以确定用于数据集成的合适的候选架构设计模式。