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    • 1. 发明申请
    • METHOD AND A PROGRAMMABLE DEVICE FOR CALCULATING AT LEAST ONE RELATIONSHIP METRIC OF A RELATIONSHIP BETWEEN OBJECTS
    • 用于计算目标之间的关系的至少一个关系度量的方法和可编程设备
    • US20130179392A1
    • 2013-07-11
    • US13347253
    • 2012-01-10
    • Manfred LangenKarsten EhmsWalter Christian Kammergruber
    • Manfred LangenKarsten EhmsWalter Christian Kammergruber
    • G06N5/02
    • G06N99/005G06F17/30864G06N5/02
    • A method for calculating at least one relationship metric of a relationship between objects has the steps of providing a multi-layered relationship network with a first relationship layer derived from potential relations between objects, a second relationship layer derived from interactions between objects, a third relationship layer derived from explicit relations between objects, and an aggregated relationship layer derived from at least two layers of the relationship layers, and wherein each layer has a graph with one vertex for every object represented in the network and at least one unidirectional and/or bidirectional edge between at least two of the objects, and calculating the edge weights based on the edge weights of at least two relationship layers, selecting at least the relationship with a highest edge weight between an object and other objects, and finally outputting the weights of the selected relationships as the calculated relationship metrics.
    • 用于计算对象之间的关系的至少一个关系度量的方法具有以下步骤:提供具有从对象之间的潜在关系导出的第一关系层的多层关系网络,从对象之间的交互导出的第二关系层,第三关系 从对象之间的显式关系导出的层以及从关系层的至少两层导出的聚合关系层,并且其中每个层具有对于在网络中表示的每个对象具有一个顶点的图和至少一个单向和/或双向 在至少两个对象之间的边缘,并且基于至少两个关系层的边缘权重来计算边缘权重,至少选择与对象和其他对象之间的最高边缘权重的关系,并且最终输出对象 选择的关系作为计算的关系指标。
    • 2. 发明授权
    • Establishing of a semantic multilayer network
    • 建立语义多层网络
    • US09256671B2
    • 2016-02-09
    • US12073064
    • 2008-02-28
    • Karsten EhmsWalter Christian Kammergruber
    • Karsten EhmsWalter Christian Kammergruber
    • G06F15/16G06F17/30
    • G06F17/30731
    • A semantic multilayer network is established, wherein a first layer in said semantic multilayer network including tag annotations, and a second layer in said semantic multilayer network including data structured by an ontology, are established and wherein the first layer and the second layer are connected. Thus, connecting of two entirely different worlds of the dynamic, emergent “social tagging” (e.g., web applications like Web 2.0) and of the regular “ontology engineering” (e.g. Semantic Web) data, dynamic data tag annotations and ontology, seen as too opposed or conflictive, therefore being treated separately and independently so far, becomes possible. Here, by utilizing advantages of both worlds, computer aided handling of large amounts of data, including e.g. processing, management, or querying of data, becomes considerably efficient and effective, wherein said data may be distributed in different areas, locations, or systems.
    • 建立了语义多层网络,其中包括标签注释的所述语义多层网络中的第一层,以及包括由本体构成的数据的所述语义多层网络中的第二层,并且其中第一层和第二层被连接。 因此,连接两个完全不同的动态的,紧迫的“社会标签”世界(例如,Web应用程序如Web 2.0)和常规的“本体工程”(例如语义Web)数据,动态数据标签注释和本体,被视为 太反对或冲突,因此到目前为止单独和独立地被对待成为可能。 在这里,通过利用两个世界的优点,大量数据的计算机辅助处理,包括例如 处理,管理或查询数据变得相当有效和有效,其中所述数据可以分布在不同的区域,位置或系统中。
    • 3. 发明申请
    • Establishing of a semantic multilayer network
    • 建立语义多层网络
    • US20090049179A1
    • 2009-02-19
    • US12073064
    • 2008-02-28
    • Karsten EhmsWalter Christian Kammergruber
    • Karsten EhmsWalter Christian Kammergruber
    • G06F15/16
    • G06F17/30731
    • A semantic multilayer network is established, wherein a first layer in said semantic multilayer network including tag annotations, and a second layer in said semantic multilayer network including data structured by an ontology, are established and wherein the first layer and the second layer are connected. Thus, connecting of two entirely different worlds of the dynamic, emergent “social tagging” (e.g., web applications like Web 2.0) and of the regular “ontology engineering” (e.g. Semantic Web) data, dynamic data tag annotations and ontology, seen as too opposed or conflictive, therefore being treated separately and independently so far, becomes possible. Here, by utilizing advantages of both worlds, computer aided handling of large amounts of data, including e.g. processing, management, or querying of data, becomes considerably efficient and effective, wherein said data may be distributed in different areas, locations, or systems.
    • 建立了语义多层网络,其中包括标签注释的所述语义多层网络中的第一层,以及包括由本体构成的数据的所述语义多层网络中的第二层,并且其中第一层和第二层被连接。 因此,连接两个完全不同的动态的,紧迫的“社会标签”世界(例如,Web应用程序如Web 2.0)和常规的“本体工程”(例如语义Web)数据,动态数据标签注释和本体,被视为 太反对或冲突,因此到目前为止单独和独立地被对待成为可能。 在这里,通过利用两个世界的优点,大量数据的计算机辅助处理,包括例如 处理,管理或查询数据变得相当有效和有效,其中所述数据可以分布在不同的区域,位置或系统中。
    • 4. 发明授权
    • Method and a programmable device for calculating at least one relationship metric of a relationship between objects
    • 方法和用于计算对象之间的关系的至少一个关系度量的可编程装置
    • US08577824B2
    • 2013-11-05
    • US13347253
    • 2012-01-10
    • Manfred LangenKarsten EhmsWalter Christian Kammergruber
    • Manfred LangenKarsten EhmsWalter Christian Kammergruber
    • G06F17/00G06F7/00G06N99/00G06F17/30
    • G06N99/005G06F17/30864G06N5/02
    • A method for calculating at least one relationship metric of a relationship between objects has the steps of providing a multi-layered relationship network with a first relationship layer derived from potential relations between objects, a second relationship layer derived from interactions between objects, a third relationship layer derived from explicit relations between objects, and an aggregated relationship layer derived from at least two layers of the relationship layers, and wherein each layer has a graph with one vertex for every object represented in the network and at least one unidirectional and/or bidirectional edge between at least two of the objects, and calculating the edge weights based on the edge weights of at least two relationship layers, selecting at least the relationship with a highest edge weight between an object and other objects, and finally outputting the weights of the selected relationships as the calculated relationship metrics.
    • 用于计算对象之间的关系的至少一个关系度量的方法具有以下步骤:提供具有从对象之间的潜在关系导出的第一关系层的多层关系网络,从对象之间的交互导出的第二关系层,第三关系 从对象之间的显式关系导出的层以及从关系层的至少两层导出的聚合关系层,并且其中每个层具有对于在网络中表示的每个对象具有一个顶点的图和至少一个单向和/或双向 在至少两个对象之间的边缘,并且基于至少两个关系层的边缘权重来计算边缘权重,至少选择与对象和其他对象之间的最高边缘权重的关系,并且最终输出对象 选择的关系作为计算的关系指标。
    • 6. 发明申请
    • METHOD AND AN APPARATUS FOR DISTRIBUTION OF A MESSAGE
    • 用于分发消息的方法和装置
    • US20130060864A1
    • 2013-03-07
    • US13225807
    • 2011-09-06
    • Karsten EhmsMichael HeissManfred Langen
    • Karsten EhmsMichael HeissManfred Langen
    • G06F15/16
    • H04L51/14G06F17/3066G06F17/3089H04L51/32
    • A message distribution apparatus and method for distribution of a message submitted by a user by a terminal connected to a communication network to a previously unknown group of receiving users has an access to a database which stores a semantic network data model with terms linked to each other by semantic relations and/or a social network data model with users linked to each other by social relations; a mapping engine which maps at least one term being associated with the submitted message to terms being associated with users of the social network data model and/or with terms of the semantic data model for generating a group of potential receiving users for the submitted message; and a distribution engine which distributes the submitted message of the submitting user via the communication network to a group of receiving users filtered from the at least one generated group of potential receiving users.
    • 用于将连接到通信网络的终端由用户提交给先前未知的接收用户组的消息分发的消息分发装置和方法具有访问存储具有彼此链接的术语的语义网络数据模型的数据库 通过语义关系和/或用户通过社会关系彼此链接的社交网络数据模型; 映射引擎,其将与所提交的消息相关联的至少一个术语映射到与社交网络数据模型的用户相关联的术语和/或用于生成用于所提交的消息的一组潜在接收用户的语义数据模型的术语; 以及分发引擎,其经由通信网络将所提交的用户的提交的消息分发到从所述至少一个生成的潜在接收用户组过滤的一组接收用户。