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    • 7. 发明授权
    • Network controller and method to support format negotiation between interfaces of a network
    • 网络控制器和方法,支持网络接口间的格式协商
    • US07346076B1
    • 2008-03-18
    • US10140518
    • 2002-05-07
    • Samer A. HabibySteven M. Michelson
    • Samer A. HabibySteven M. Michelson
    • H04J3/16H04J3/22H04L12/66H04B1/00H04B7/00H04Q7/20
    • H04L67/2823H04L2012/5618
    • A controller of a communications network enables endpoints or multiple networks to intercommunicate using multiple types of bearer format (IP, TDM, ATM, Frame Relay, etc.), and enables a bearer format conversion when necessary to carry bearer channel information across an interface of the network. The network may be packet-based or circuit-based and may include gateways and associated controllers which work in tandem to transfer format conversion parameters between endpoints or networks. The format control parameters are exchanged between various controllers, i.e., call control elements, to determine the appropriate format to forward the bearer channel information across the interface and to instruct the associated gateway of the required format conversion. The determination of the necessary format conversions may occur on a call-by-call basis, or by periodically detecting and storing format conversions associated with the various endpoints and intercommunicating networks. A corresponding method is also disclosed.
    • 通信网络的控制器使得端点或多个网络能够使用多种类型的承载格式(IP,TDM,ATM,帧中继等)进行互通,并且在必要时能够承载格式转换以承载信道信息跨越 网络。 该网络可以是基于分组的或基于电路的,并且可以包括串行工作的网关和相关联的控制器,以在端点或网络之间传送格式转换参数。 格式控制参数在各种控制器(即呼叫控制元件)之间进行交换,以确定跨接口转发承载信道信息的适当格式,并指示相关网关所需的格式转换。 确定必要的格式转换可以在逐个呼叫的基础上发生,或者通过周期性地检测和存储与各种端点和互通网络相关联的格式转换。 还公开了相应的方法。
    • 8. 发明授权
    • Network controller and method to support format negotiation between interfaces of a network
    • 网络控制器和方法,支持网络接口间的格式协商
    • US07746893B2
    • 2010-06-29
    • US12030151
    • 2008-02-12
    • Samer A. HabibySteven M. Michelson
    • Samer A. HabibySteven M. Michelson
    • H04J3/16H04J3/22
    • H04L67/2823H04L2012/5618
    • A controller of a communications network enables endpoints or multiple networks to intercommunicate using multiple types of bearer format (IP, TDM, ATM, Frame Relay, etc.), and enables a bearer format conversion when necessary to carry bearer channel information across an interface of the network. The network may be packet-based or circuit-based and may include gateways and associated controllers which work in tandem to transfer format conversion parameters between endpoints or networks. The format control parameters are exchanged between various controllers, i.e., call control elements, to determine the appropriate format to forward the bearer channel information across the interface and to instruct the associated gateway of the required format conversion. The determination of the necessary format conversions may occur on a call-by-call basis, or by periodically detecting and storing format conversions associated with the various endpoints and intercommunicating networks. A corresponding method is also disclosed.
    • 通信网络的控制器使得端点或多个网络可以使用多种类型的承载格式(IP,TDM,ATM,帧中继等)相互通信,并且当必要时能够进行承载格式转换,以承载信道信息跨越 网络。 该网络可以是基于分组的或基于电路的,并且可以包括串行工作的网关和相关联的控制器,以在端点或网络之间传送格式转换参数。 格式控制参数在各种控制器(即呼叫控制元件)之间进行交换,以确定跨接口转发承载信道信息的适当格式,并指示相关网关所需的格式转换。 确定必要的格式转换可以在逐个呼叫的基础上发生,或者通过周期性地检测和存储与各种端点和互通网络相关联的格式转换。 还公开了相应的方法。
    • 9. 发明申请
    • NETWORK CONTROLLER AND METHOD TO SUPPORT FORMAT NEGOTIATION BETWEEN INTERFACES OF A NETWORK
    • 网络控制器和支持网络接口之间的格式化协商的方法
    • US20080144659A1
    • 2008-06-19
    • US12030151
    • 2008-02-12
    • Samer A. HabibySteven M. Michelson
    • Samer A. HabibySteven M. Michelson
    • H04L29/06
    • H04L67/2823H04L2012/5618
    • A controller of a communications network enables endpoints or multiple networks to intercommunicate using multiple types of bearer format (IP, TDM, ATM, Frame Relay, etc.), and enables a bearer format conversion when necessary to carry bearer channel information across an interface of the network. The network may be packet-based or circuit-based and may include gateways and associated controllers which work in tandem to transfer format conversion parameters between endpoints or networks. The format control parameters are exchanged between various controllers, i.e., call control elements, to determine the appropriate format to forward the bearer channel information across the interface and to instruct the associated gateway of the required format conversion. The determination of the necessary format conversions may occur on a call-by-call basis, or by periodically detecting and storing format conversions associated with the various endpoints and intercommunicating networks. A corresponding method is also disclosed.
    • 通信网络的控制器使得端点或多个网络可以使用多种类型的承载格式(IP,TDM,ATM,帧中继等)相互通信,并且当必要时能够进行承载格式转换,以承载信道信息跨越 网络。 该网络可以是基于分组的或基于电路的,并且可以包括串行工作的网关和相关联的控制器,以在端点或网络之间传送格式转换参数。 格式控制参数在各种控制器(即呼叫控制元件)之间进行交换,以确定跨接口转发承载信道信息的适当格式,并指示相关网关所需的格式转换。 确定必要的格式转换可以在逐个呼叫的基础上发生,或者通过周期性地检测和存储与各种端点和互通网络相关联的格式转换。 还公开了相应的方法。
    • 10. 发明授权
    • Method and apparatus for transaction routing in a connection-oriented packet network using a non-fault-tolerant directory server
    • 使用非容错目录服务器的面向连接的分组网络中的事务路由的方法和装置
    • US06665730B1
    • 2003-12-16
    • US09464398
    • 1999-12-16
    • Steven M. MichelsonMark A. Ratcliffe
    • Steven M. MichelsonMark A. Ratcliffe
    • G06F1516
    • H04L45/10
    • A transaction-based routing system applies particular routing procedures wherein one example uses Global Title Translation (“GTT”) techniques for a connection-oriented packet network. The network comprises a plurality of nodes including intermediate and edge nodes. Initially, intermediate nodes in the network receive data messages including originating node identifiers and first translation requests from originating edge nodes and route these messages, based on the first translation requests, over selected network routing paths to destination edge nodes. In response, intermediate nodes receive response data messages including the originating node identifiers and second translation requests from destination edge nodes and route these response messages, based on the second translation requests, over selected network routing paths to the originating nodes. These routing procedures help reduce the complexity of logical connectivity in the network.
    • 基于事务的路由系统应用特定路由过程,其中一个示例使用用于面向连接的分组网络的全局标题翻译(“GTT”)技术。 该网络包括多个节点,包括中间节点和边缘节点。 最初,网络中的中间节点接收包括起始节点标识符和来自始发边缘节点的第一转换请求的数据消息,并且基于第一转换请求,通过到目的地边缘节点的选择的网络路由路径来路由这些消息。 作为响应,中间节点从目的地边缘节点接收包括起始节点标识符和第二转换请求的响应数据消息,并且基于第二转换请求,通过到始发节点的选择的网络路由路径路由这些响应消息。 这些路由过程有助于降低网络中逻辑连接的复杂性。