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    • 14. 发明申请
    • Timing Management for Implementing Smarter Decisions in Time-Constrained Complex Distribution Systems
    • 在时间约束复杂分布系统中实施更智能决策的时序管理
    • US20130086274A1
    • 2013-04-04
    • US13632326
    • 2012-10-01
    • Bhavesh GoswamiGerhard GeldenbottSalman AliArpita SahaYi-Min Flora ChuaAndy Hazzard
    • Bhavesh GoswamiGerhard GeldenbottSalman AliArpita SahaYi-Min Flora ChuaAndy Hazzard
    • G06F15/16
    • G06F9/4887
    • A timing management node that assigns and adjusts timeout values for a time-constrained complex distributed system based on the nature of a system request, preferences of a customer furnishing a system request, and/or a current state of a complex distributed system. A timing management node evaluates information regarding a system request and information regarding a current state of a complex distributed system to generate timing requirements for the system request. Timing requirements are compiled in a timing policy messager and passed amongst nodes of a complex distributed system with process flow. Timing requirements may be revised during request processing to reflect events that have occurred within the distributed system. A timing policy message contains a timeout value and a total time elapsed parameter for a system request, to permit a complex distributed system to make smarter processing decisions based on a known time remaining to process the given system request.
    • 时间管理节点,其基于系统请求的性质,提供系统请求的客户偏好和/或复杂分布式系统的当前状态来分配和调整时间受限的复杂分布式系统的超时值。 定时管理节点评估关于系统请求的信息和关于复杂分布式系统的当前状态的信息,以产生系统请求的定时要求。 定时要求在时序策略消息中编译,并在具有过程流的复杂分布式系统的节点之间传递。 可以在请求处理期间对时序要求进行修改,以反映分布式系统中发生的事件。 定时策略消息包含系统请求的超时值和总时间逝去参数,以允许复杂的分布式系统基于剩余的已知时间来处理给定的系统请求而做出更明智的处理决策。
    • 17. 发明授权
    • Nationwide table routing of voice over internet protocol (VOIP) emergency calls
    • 全国互联网语音协议(VOIP)紧急呼叫的表路由
    • US08068587B2
    • 2011-11-29
    • US12461702
    • 2009-08-21
    • Gerhard GeldenbottGordon J. HinesJeff MartinEd Day
    • Gerhard GeldenbottGordon J. HinesJeff MartinEd Day
    • H04M11/04
    • H04M3/5116H04M2207/20H04M2242/30
    • The present invention is used in an emergency network to identify and provide the correct public safety access point (PSAP) to service an emergency call originating from a Voice Over Internet Protocol (VoIP) subscriber. Data stores in an emergency services network associate PSAPs to an input ZIP code obtained from a street address returned from an MSAG relating to a VoIP call, and PSAPs to an input ESN. An emergency caller's civic street address is matched against a nationwide MSAG data store to result in a MSAG ESN. From the street address, the emergency caller's ZIP code is matched to a PSAP in an appropriate ZIP/PSAP data store. A matching PSAP from both the ZIP/PSAP and PSAP/ESN data stores determines with great reliability the identity of the proper PSAP for that emergency caller.
    • 本发明用于紧急网络中以识别并提供正确的公共安全接入点(PSAP),以对来自因特网协议语音(VoIP)用户的紧急呼叫进行服务。 紧急服务网络中的数据存储将PSAP与从与VoIP呼叫相关的MSAG返回的街道地址获得的输入邮政编码,以及PSAP输入到输入ESN。 紧急呼叫者的公民街道地址与全国的MSAG数据存储区进行匹配,以产生MSAG ESN。 从街道地址,紧急呼叫者的邮政编码与适当的ZIP / PSAP数据存储中的PSAP相匹配。 来自ZIP / PSAP和PSAP / ESN数据存储器的匹配PSAP以非常可靠的方式确定该紧急呼叫者的正确PSAP的身份。
    • 18. 发明申请
    • End-to-end logic tracing of complex call flows in a distributed call system
    • 分布式呼叫系统中复杂呼叫流的端到端逻辑跟踪
    • US20090238343A1
    • 2009-09-24
    • US12081191
    • 2008-04-11
    • Gerhard GeldenbottGordon J. Hines
    • Gerhard GeldenbottGordon J. Hines
    • H04M11/04
    • H04M3/36H04M3/2281H04M11/04H04W4/90H04W24/08H04W76/50
    • A logic history can be provided for every request or call instance through a distributed computing system that uniquely traces its entire path, end-to-end, in-band within the messaging for the system. The end result is a single true representation of what occurred with no post computational inference. Accordingly, unique logic history codes are not forced across the system. Rather sub-components that are logic history enabled can use codes that have meaning and applicability to itself. Unique logic history codes are not forced across the system, which in practice would be brittle. Rather each sub-component that is logic history enabled can use codes that have meaning and applicability only to itself. This allows the system to be flexible and lets sub-components change and redefine their logic and logic history traces without impacting the rest of the system.
    • 可以通过分布式计算系统为每个请求或调用实例提供逻辑历史,分布式计算系统在系统的消息传递中唯一地跟踪其整个路径,在端到端。 最终的结果是对没有后期计算推断的事件的单一真实表示。 因此,独特的逻辑历史代码不会被强制跨系统。 相对于启用逻辑历史的子组件可以使用具有自身意义和适用性的代码。 唯一的逻辑历史代码不会被强制跨系统,实际上这将是脆弱的。 相反,启用逻辑历史的每个子组件都可以使用仅对其本身具有意义和适用性的代码。 这允许系统灵活,并允许子组件更改并重新定义其逻辑和逻辑历史记录,而不会影响系统的其余部分。