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    • 2. 发明申请
    • METHOD FOR AUTHENTICATING A MOBILE UNIT ATTACHED TO A FEMTOCELL THAT OPERATES ACCORDING TO CODE DIVISION MULTIPLE ACCESS
    • 用于认证移动单元连接到根据代码段多功能访问的FEMTOCELL的方法
    • US20090191844A1
    • 2009-07-30
    • US12019903
    • 2008-01-25
    • TODD C. MORGANSarvar PatelRobin J. Thompson
    • TODD C. MORGANSarvar PatelRobin J. Thompson
    • H04M3/16H04B7/216
    • H04W12/06H04W84/045
    • The present invention provides a method involving a femtocell in communication with an Internet Protocol Multimedia Subsystem (IMS) network. In one embodiment, the femtocell operates according to code division multiple access (CDMA) standards. The method includes receiving, from the femtocell and at a first secure entity in the IMS network, first authentication information generated by the mobile unit using a first random number broadcast by the femtocell in a global challenge. The method also includes receiving, from a second secure entity in the secure network, at least one security key formed based on the global challenge and second authentication information for uniquely challenging the mobile unit. In one embodiment, the second secure entity is a CDMA-based authentication server. The method further includes providing the security key(s) to the femtocell in response to authenticating the mobile unit based upon the second authentication information.
    • 本发明提供一种涉及与因特网协议多媒体子系统(IMS)网络通信的毫微微小区的方法。 在一个实施例中,毫微微小区根据码分多址(CDMA)标准进行操作。 该方法包括从毫微微小区和IMS网络中的第一安全实体接收移动单元使用在全球挑战中由毫微微小区广播的第一随机数生成的第一认证信息。 该方法还包括从安全网络中的第二安全实体接收基于全局挑战形成的至少一个安全密钥和用于唯一挑战移动单元的第二认证信息。 在一个实施例中,第二安全实体是基于CDMA的认证服务器。 所述方法还包括响应于基于所述第二认证信息认证所述移动单元向所述毫微微小区提供所述安全密钥。
    • 4. 发明授权
    • Method for authenticating a mobile unit attached to a femtocell that operates according to code division multiple access
    • 用于认证连接到根据码分多址操作的毫微微小区的移动单元的方法
    • US08428554B2
    • 2013-04-23
    • US12019903
    • 2008-01-25
    • Todd C. MorganSarvar PatelRobin J. Thompson
    • Todd C. MorganSarvar PatelRobin J. Thompson
    • H04M1/66H04M3/16H04W4/00H04W36/00H04L9/00H04L29/06H04K1/00G06F21/00G06F7/04G06F17/30
    • H04W12/06H04W84/045
    • The present invention provides a method involving a femtocell in communication with an Internet Protocol Multimedia Subsystem (IMS) network. In one embodiment, the femtocell operates according to code division multiple access (CDMA) standards. The method includes receiving, from the femtocell and at a first secure entity in the IMS network, first authentication information generated by the mobile unit using a first random number broadcast by the femtocell in a global challenge. The method also includes receiving, from a second secure entity in the secure network, at least one security key formed based on the global challenge and second authentication information for uniquely challenging the mobile unit. In one embodiment, the second secure entity is a CDMA-based authentication server. The method further includes providing the security key(s) to the femtocell in response to authenticating the mobile unit based upon the second authentication information.
    • 本发明提供一种涉及与因特网协议多媒体子系统(IMS)网络通信的毫微微小区的方法。 在一个实施例中,毫微微小区根据码分多址(CDMA)标准进行操作。 该方法包括从毫微微小区和IMS网络中的第一安全实体接收移动单元使用在全球挑战中由毫微微小区广播的第一随机数生成的第一认证信息。 该方法还包括从安全网络中的第二安全实体接收基于全局挑战形成的至少一个安全密钥和用于唯一挑战移动单元的第二认证信息。 在一个实施例中,第二安全实体是基于CDMA的认证服务器。 所述方法还包括响应于基于所述第二认证信息认证所述移动单元向所述毫微微小区提供所述安全密钥。
    • 7. 发明授权
    • Customer programmable real-time system
    • 客户可编程实时系统
    • US4747127A
    • 1988-05-24
    • US812941
    • 1985-12-23
    • Terris L. HansenWayne E. HyattDeborah D. KimminauWu-Hon F. LeungTodd C. MorganPaul M. Zislis
    • Terris L. HansenWayne E. HyattDeborah D. KimminauWu-Hon F. LeungTodd C. MorganPaul M. Zislis
    • H04M3/00G06F3/16G06F9/06G06F9/44G06F9/45H04Q3/00H04Q3/545H04M11/00
    • G06F8/31G06F3/16H04Q3/0033H04Q2213/13548Y10S379/914
    • A telecommunication and development system for the switching of voice and data under computer control in a customer programmable environment that allows real-time modification of communication services. The computer program controlling the system is written in a nonprocedural language that allows for the direct control of the telecommunication system on the basis of state definition, event definition, and action definition. Program scripts define a particular feature, and each script consists of a plurality of triples that automatically respond to the system state and signal information to execute the necessary actions to provide part of a feature to the telecommunication system. During provision of telecommunication services, a customer can add new features that not only add new operations to the system, but modify existing operations without interfering with the present operation of the system. This is possible since the nonprocedural language allows for the direct control of interaction between features and provides for the automatic execution of required operations during state transitions. In addition, the nonprocedural language allows a feature or script to control its own deactivation or activation. Also, the software development environment is based on a standard operating system allowing for ease of development. The above features allow a customer to program his or her own individual communication unit to provide desired features without affecting the operation of the telecommunication system or the features provided to other customers.
    • 用于在客户可编程环境中的计算机控制下切换语音和数据的电信和开发系统,其允许通信服务的实时修改。 控制系统的计算机程序以非过程语言编写,允许基于状态定义,事件定义和动作定义直接控制电信系统。 程序脚本定义特定的特征,并且每个脚本由多个三元组组成,其自动地响应于系统状态和信号信息,以执行必要的动作以向电信系统提供部分特征。 在提供电信服务期间,客户可以添加不仅为系统添加新操作的新功能,而且可以修改现有操作,而不会干扰系统的当前操作。 这是可能的,因为非过程语言允许直接控制特征之间的交互,并且在状态转换期间提供自动执行所需的操作。 此外,非过程语言允许功能或脚本控制其自身的停用或激活。 此外,软件开发环境基于允许开发容易的标准操作系统。 上述功能允许客户编程他或她自己的个人通信单元以提供期望的特征,而不影响电信系统的操作或提供给其他客户的特征。
    • 8. 发明授权
    • Location aggregation system
    • 位置聚合系统
    • US08989776B2
    • 2015-03-24
    • US13848777
    • 2013-03-22
    • Michael J. EdwardsTodd C. MorganSandra L. True
    • Michael J. EdwardsTodd C. MorganSandra L. True
    • H04W24/00H04W60/00H04W8/04H04W64/00
    • H04W60/00H04W8/04H04W64/00
    • Exemplary methods and apparatuses are provided that address how to turn visitor location register location data from telecommunications networks into information that can be aggregated across network switches, accessed by a direct query mechanism or via application programming interfaces, and reported upon from a single point of entry without affecting the performance or capacity of the network switches. Specifically, a Location Aggregation Server is provided that is configured to aggregate mobile terminal location data across multiple visitor location registers and to populate a database with the location information, e.g., an identifier of the mobile terminal and an identifier of a new location of the mobile terminal. Service providers and third parties may be able to search the database, display mobile terminal location data on a map, or aggregate the mobile terminal location data into meaningful statistics.
    • 提供了解决如何将来自电信网络的访问者位置寄存器位置数据转换成可以跨网络交换机聚合的信息的示例性方法和装置,通过直接查询机制或经由应用编程接口访问,并且从单个入口点报告 而不影响网络交换机的性能或容量。 具体地,提供了一种位置聚合服务器,其被配置为在多个访问者位置寄存器之间聚合移动终端位置数据,并且使用位置信息填充数据库,例如移动终端的标识符和移动终端的新位置的标识符 终奌站。 服务提供商和第三方可能能够搜索数据库,在地图上显示移动终端位置数据,或将移动终端位置数据聚合成有意义的统计。
    • 9. 发明申请
    • METHOD FOR AUTHENTICATING A MOBILE UNIT ATTACHED TO A FEMTOCELL THAT OPERATES ACCORDING TO CODE DIVISION MULTIPLE ACCESS
    • 用于认证移动单元连接到根据代码段多功能访问的FEMTOCELL的方法
    • US20120184249A1
    • 2012-07-19
    • US13428192
    • 2012-03-23
    • TODD C. MORGANSarvar PatelRobin J. Thompson
    • TODD C. MORGANSarvar PatelRobin J. Thompson
    • H04W12/04
    • H04W12/06H04W84/045
    • The present invention provides a method involving a femtocell in communication with an Internet Protocol Multimedia Subsystem (IMS) network. In one embodiment, the femtocell operates according to code division multiple access (CDMA) standards. The method includes receiving, from the femtocell and at a first secure entity in the IMS network, first authentication information generated by the mobile unit using a first random number broadcast by the femtocell in a global challenge. The method also includes receiving, from a second secure entity in the secure network, at least one security key formed based on the global challenge and second authentication information for uniquely challenging the mobile unit. In one embodiment, the second secure entity is a CDMA-based authentication server. The method further includes providing the security key(s) to the femtocell in response to authenticating the mobile unit based upon the second authentication information.
    • 本发明提供一种涉及与因特网协议多媒体子系统(IMS)网络通信的毫微微小区的方法。 在一个实施例中,毫微微小区根据码分多址(CDMA)标准进行操作。 该方法包括从毫微微小区和IMS网络中的第一安全实体接收移动单元使用在全球挑战中由毫微微小区广播的第一随机数生成的第一认证信息。 该方法还包括从安全网络中的第二安全实体接收基于全局挑战形成的至少一个安全密钥和用于唯一挑战移动单元的第二认证信息。 在一个实施例中,第二安全实体是基于CDMA的认证服务器。 所述方法还包括响应于基于所述第二认证信息认证所述移动单元向所述毫微微小区提供所述安全密钥。
    • 10. 发明授权
    • Method and apparatus for inter-object communication in an
object-oriented program controlled system
    • 面向对象程序控制系统中的对象间通信的方法和装置
    • US5551035A
    • 1996-08-27
    • US405578
    • 1995-03-16
    • Erich C. ArnoldOlivia M. GagliardiWayne E. HyattLawrence G. MaykaTodd C. Morgan
    • Erich C. ArnoldOlivia M. GagliardiWayne E. HyattLawrence G. MaykaTodd C. Morgan
    • G06F9/46H04L29/06G06F15/16
    • H04L29/06G06F9/465G06F2209/462
    • In a telecommunication switching system the telecommunication software is implemented by means of independent software components referred to as objects. The objects communicate with each other by messages and symbolic names only. A runtime system includes a runtime linker which registers the systems components and records a data pointer to the components data. To communicate with another object, a source object transmits an executable expression, called a message, to the runtime system. The message includes the symbolic name and the identity of the method of the destination object. The runtime system serves only a single processor or group of objects and calls the destination object, by means of the identity of the method and the data pointer if the destination object is within the group of objects served by the runtime system. In the case a destination object is located on another processor, the runtime system will broadcast the message to other processors. In each of the receiving processors, the runtime system searches its linker table for the symbolic name of the destination object of the message and if found calls the destination object on the basis of the method identification in the message and the data pointer information in the runtime linker. Interprocessor messages include a source processor designation and the run system of each of the processors records the name of the source processor and the symbolic name of the source object when an interprocessor message is received. This table is consulted before broadcasting a message to a non-resident destination object and a direct processor-to-processor communication is established, instead of a broadcast, if the symbolic name of the destination object is recorded together with the corresponding processor identification, in the destination table.
    • 在电信交换系统中,电信软件通过被称为对象的独立软件组件来实现。 对象通过消息和符号名称进行通信。 运行时系统包括一个运行时连接器,用于注册系统组件并记录数据指针到组件数据。 为了与另一个对象进行通信,源对象将一个称为消息的可执行表达式发送到运行时系统。 消息包括目标对象的符号名称和方法的标识。 如果目标对象位于由运行时系统服务的对象组内,则运行时系统仅通过方法的身份和数据指针来仅服务于单个处理器或一组对象并调用目标对象。 在目的地对象位于另一个处理器上的情况下,运行时系统会将消息广播到其他处理器。 在每个接收处理器中,运行时系统在其链接器表中搜索消息的目标对象的符号名称,如果发现根据消息中的方法标识和运行时的数据指针信息调用目标对象 接头。 处理器内消息包括源处理器指定,并且每个处理器的运行系统在接收到处理器间消息时记录源处理器的名称和源对象的符号名称。 在将消息广播到非驻留目的地对象之前,咨询该表,并且如果将目的地对象的符号名称与相应的处理器标识一起记录,则建立直接处理器到处理器通信而不是广播,在 目的地表。