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    • 1. 发明申请
    • Generic Reasoner Distribution Method
    • 通用推理方法
    • US20130262366A1
    • 2013-10-03
    • US13437794
    • 2012-04-02
    • Johan HjelmTakeshi MatsumuraBo XingAndrew TonShingo Murakami
    • Johan HjelmTakeshi MatsumuraBo XingAndrew TonShingo Murakami
    • G06N5/02
    • G06N5/04
    • A method for improving distribution of resources for a reasoning system including a plurality of data sources that each generate raw data that is to be processed by shallow reasoners before being provided to other components of the reasoning system to generate high-level inferred conclusions, the method including the steps of discovering available data sources from the plurality of data sources by discovery of protocol modules executed by devices associated with each data source; collecting capability information from each protocol module for each associated device; sending the capability information to a predictor server; requesting a resource allocation plan from the predictor server; and receiving the resource allocations plan from the predictor server, the resource allocation plane identifying devices associated with the plurality of data sources for executing shallow reasoners, the devices selected based on a usage model and the capability information.
    • 一种用于改善包括多个数据源在内的推理系统的资源分配的方法,所述多个数据源在提供给推理系统的其他组件之前生成要由浅推理器处理的原始数据以产生高级推断结论,该方法 包括通过发现由与每个数据源相关联的设备执行的协议模块来发现来自多个数据源的可用数据源的步骤; 从每个协议模块收集每个相关设备的能力信息; 将能力信息发送到预测器服务器; 从预测器服务器请求资源分配计划; 以及从所述预测器服务器接收所述资源分配计划,所述资源分配计划识别与所述多个数据源相关联的用于执行浅层推理者的设备,所述设备基于使用模型和所述能力信息来选择。
    • 2. 发明授权
    • Generic reasoner distribution of resources using a plurality of shallow reasoners, and a predictor server
    • 使用多个浅层推理器的资源的通用推理器分布,以及预测器服务器
    • US08751420B2
    • 2014-06-10
    • US13437794
    • 2012-04-02
    • Johan HjelmTakeshi MatsumuraBo XingAndrew TonShingo Murakami
    • Johan HjelmTakeshi MatsumuraBo XingAndrew TonShingo Murakami
    • G06F15/18
    • G06N5/04
    • A method for improving distribution of resources for a reasoning system including a plurality of data sources that each generate raw data that is to be processed by shallow reasoners before being provided to other components of the reasoning system to generate high-level inferred conclusions, the method including the steps of discovering available data sources from the plurality of data sources by discovery of protocol modules executed by devices associated with each data source; collecting capability information from each protocol module for each associated device; sending the capability information to a predictor server; requesting a resource allocation plan from the predictor server; and receiving the resource allocations plan from the predictor server, the resource allocation plane identifying devices associated with the plurality of data sources for executing shallow reasoners, the devices selected based on a usage model and the capability information.
    • 一种用于改善包括多个数据源在内的推理系统的资源分配的方法,所述多个数据源在提供给推理系统的其他组件之前生成要由浅推理器处理的原始数据以产生高级推断结论,该方法 包括通过发现由与每个数据源相关联的设备执行的协议模块来发现来自多个数据源的可用数据源的步骤; 从每个协议模块收集每个相关设备的能力信息; 将能力信息发送到预测器服务器; 从预测器服务器请求资源分配计划; 以及从所述预测器服务器接收所述资源分配计划,所述资源分配计划识别与所述多个数据源相关联的用于执行浅层推理者的设备,所述设备基于使用模型和所述能力信息来选择。
    • 4. 发明授权
    • Method and system for controlled communication between applications
    • 应用程序之间的受控通信的方法和系统
    • US08707330B2
    • 2014-04-22
    • US13457695
    • 2012-04-27
    • Kenta YasukawaAndrew TonBo XingJohan Hjelm
    • Kenta YasukawaAndrew TonBo XingJohan Hjelm
    • G06F13/00
    • G06F9/54
    • A method, system and computer program in a software framework for enabling controlled communication between a generic application on the software framework and a service application in a second environment. An access request is transmitted by the generic application to an interface provision unit. The request includes an identity of the generic application. An instant interface is provided by the interface provision unit to the second environment. The instant interface is determined by the access request and dedicated for the generic application. A response is returned by the interface provision unit to the generic application including an address to the instant interface. Thereby the instant interface permits controlled communication between the generic application and the service application, thus enabling the new controlled communication without changes of the second environment.
    • 软件框架中的方法,系统和计算机程序,用于实现软件框架上的通用应用与第二环境中的服务应用之间的受控通信。 访问请求由通用应用程序发送到接口提供单元。 该请求包括通用应用程序的标识。 即时接口由接口提供单元提供给第二环境。 即时接口由访问请求确定,专用于通用应用程序。 接口提供单元向通用应用程序返回响应,包括到即时接口的地址。 因此,即时接口允许通用应用程序和服务应用程序之间的受控通信,从而实现新的受控通信而不改变第二环境。
    • 6. 发明申请
    • Method and System for Controlled Communication Between Applications
    • 应用程序之间的控制通信方法和系统
    • US20130290981A1
    • 2013-10-31
    • US13457695
    • 2012-04-27
    • Kenta YasukawaAndrew TonBo XingJohan Hjelm
    • Kenta YasukawaAndrew TonBo XingJohan Hjelm
    • G06F3/00G06F9/46
    • G06F9/54
    • A method, system and computer program in a software framework for enabling controlled communication between a generic application on the software framework and a service application in a second environment. An access request is transmitted by the generic application to an interface provision unit. The request includes an identity of the generic application. An instant interface is provided by the interface provision unit to the second environment. The instant interface is determined by the access request and dedicated for the generic application. A response is returned by the interface provision unit to the generic application including an address to the instant interface. Thereby the instant interface permits controlled communication between the generic application and the service application, thus enabling the new controlled communication without changes of the second environment.
    • 软件框架中的方法,系统和计算机程序,用于实现软件框架上的通用应用与第二环境中的服务应用之间的受控通信。 访问请求由通用应用程序发送到接口提供单元。 该请求包括通用应用程序的标识。 即时接口由接口提供单元提供给第二环境。 即时接口由访问请求确定,专用于通用应用程序。 接口提供单元向通用应用程序返回响应,包括到即时接口的地址。 因此,即时接口允许通用应用程序和服务应用程序之间的受控通信,从而实现新的受控通信而不改变第二环境。