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    • 83. 发明授权
    • Optimizing caching period of location data for network based location services
    • 优化基于网络的位置服务的位置数据的缓存周期
    • US08131818B2
    • 2012-03-06
    • US12629539
    • 2009-12-02
    • Mark D. NielsenSri RamanathanMatthew A. TerryMatthew B. Trevathan
    • Mark D. NielsenSri RamanathanMatthew A. TerryMatthew B. Trevathan
    • G06F17/30G06N5/02
    • H04W4/025H04L67/2852
    • A system and associated method for optimizing caching period of location data for network based location services. A location caching server receives a location request from a mobile device. The location caching server calculates, pursuant to a predefined calculation rule, a caching period of a location cache entry for the mobile device based on a precision level requested by the mobile device and a service precision level assigned for a type of location service for which the location request was made. The location caching server obtains real location data of the mobile device of the calculated caching period is expired. The location caching server subsequently adjusts the caching period based on a distance traveled by the mobile device pursuant to a predefined adjustment rule, and updates the location cache entry.
    • 一种用于优化基于网络的位置服务的位置数据的缓存周期的系统和相关方法。 位置缓存服务器从移动设备接收位置请求。 位置高速缓存服务器根据预定义的计算规则,根据移动设备请求的精度等级,计算移动设备的位置高速缓存条目的缓存周期,以及为一类位置服务分配的服务精度级别, 已提出位置要求。 位置缓存服务器获取计算的缓存期间的移动设备的真实位置数据已过期。 位置缓存服务器随后根据预定义的调整规则根据移动设备行进的距离来调整缓存周期,并更新位置缓存条目。
    • 87. 发明申请
    • ENABLING SOA GOVERNANCE USING A SERVICE LIFECYCLE APPROACH
    • 使用服务生活方式来实现SOA治理
    • US20100250320A1
    • 2010-09-30
    • US12410503
    • 2009-03-25
    • Kishore ChannabasavaiahBenjamin S. GerberSri RamanathanMatthew B. TrevathanRaghu VaradanNevenko Zunic
    • Kishore ChannabasavaiahBenjamin S. GerberSri RamanathanMatthew B. TrevathanRaghu VaradanNevenko Zunic
    • G06Q10/00
    • G06Q10/10G06Q10/06G06Q10/06316
    • Methods, including service methods, articles of manufacture, systems, articles and programmable devices are provided for creating and using shared services through service-oriented architecture governance and a services lifecycle process. Service lifecycle steps are identified within a service-oriented architecture shared services model. Service stakeholders, decision-making touch-points and service state transition touch-points are identified in the shared services model, and service state-based lifecycle governance checkpoints within the shared services model are defined as a function of the identified service lifecycle steps, service stakeholders, decision-making touch-points and state transition touch-points. Further, integration points to existing processes are defined as a function of defined service state-based lifecycle governance checkpoints, governance fit-gap analyses are performed as a function of defined service state-based lifecycle governance checkpoints and identified service stakeholders, and services lifecycle gap touch-points are implemented as a function of the governance fit-gap analysis.
    • 提供方法,包括服务方法,制造文章,系统,文章和可编程设备,用于通过面向服务的架构治理和服务生命周期过程来创建和使用共享服务。 服务生命周期步骤在面向服务的架构共享服务模型中被识别。 服务利益相关者,决策接触点和服务状态转换接触点在共享服务模型中被识别,并且共享服务模型内的基于服务状态的生命周期治理检查点被定义为所识别的服务生命周期步骤,服务 利益相关者,决策接触点和状态转换接触点。 此外,将现有流程的集成指向定义为定义的基于服务状态的生命周期治理检查点的功能,根据定义的基于服务状态的生命周期治理检查点和确定的服务利益相关者以及服务生命周期差距执行治理适应差距分析 接触点是作为治理适应差分析的函数来实现的。