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    • 1. 发明授权
    • Trusted access to third party applications systems and methods
    • 受信任的访问第三方应用程序系统和方法
    • US08863252B1
    • 2014-10-14
    • US13557213
    • 2012-07-25
    • Robin D. KatzerLyle W. PaczkowskiWilliam M. ParselCarl J. PerssonMatthew C. Schlesener
    • Robin D. KatzerLyle W. PaczkowskiWilliam M. ParselCarl J. PerssonMatthew C. Schlesener
    • G06F7/00
    • G06F21/53H04W12/10H04W12/12
    • A method of downloading trusted content. The method comprises sending by a mobile device a request for a trusted content to a server, wherein the mobile device comprises a first mobile device trusted security zone and builds the request while executing in the first mobile device trusted security zone and wherein the server comprises a server trusted security zone and wherein the server handles the request for the trusted content at least partly in the server trusted security zone. The method comprises receiving the trusted content by the first mobile device trusted security zone, storing the trusted content in a second mobile device trusted security zone of the mobile device, inspecting the trusted content in the second mobile device trusted security zone, and when the trusted content passes inspection, at least one of executing or presenting a portion of the trusted content by the first mobile device trusted security zone.
    • 一种下载可信内容的方法。 所述方法包括由移动设备向服务器发送对可信内容的请求,其中所述移动设备包括第一移动设备信任安全区域,并在所述第一移动设备信任安全区域中执行时构建所述请求,并且其中所述服务器包括 服务器可信安全区域,并且其中服务器至少部分地在服务器可信安全区域中处理对可信内容的请求。 该方法包括由第一移动设备信任安全区域接收可信内容,将可信内容存储在移动设备的第二移动设备信任安全区域中,检查第二移动设备可信安全区域中的可信内容,以及何时可信 内容通过检查,由第一移动设备可信安全区执行或呈现可信内容的一部分中的至少一个。
    • 2. 发明申请
    • TRUSTED SECURITY ZONE ACCESS TO PERIPHERAL DEVICES
    • TRUSTED安全区域访问外围设备
    • US20140033316A1
    • 2014-01-30
    • US13556200
    • 2012-07-24
    • Lyle W. PaczkowskiWilliam M. ParselCarl J. PerssonMatthew C. Schlesener
    • Lyle W. PaczkowskiWilliam M. ParselCarl J. PerssonMatthew C. Schlesener
    • G06F21/00
    • G06F21/62G06F21/74G06F21/85
    • A method of trusted data communication. The method comprises executing a data communication application in a trusted security zone of a processor, wherein the processor is a component of a computer, commanding a controller of a peripheral device to execute a control application in a trusted security zone of the controller, wherein the controller is a component of the computer, commanding at least one of another peripheral device or a user interface device to not access a data bus of the computer, verifying that the controller is executing the control application in the trusted security zone of the controller, sending data from the processor to the controller over the data bus of the computer, and the controller one of transmitting the data sent by the processor on an external communication link, reading a memory storage disk, or writing to a memory storage disk.
    • 可信数据通信的方法。 该方法包括在处理器的可信安全区域中执行数据通信应用,其中处理器是计算机的组件,命令外围设备的控制器执行控制器的可信安全区域中的控制应用,其中, 控制器是计算机的组件,命令至少另一个外围设备或用户接口设备之一,以不访问计算机的数据总线,验证控制器正在执行控制器的可信安全区域中的控制应用程序,发送 通过计算机的数据总线从处理器到控制器的数据,以及控制器,用于在外部通信链路上发送由处理器发送的数据,读取存储器存储盘或写入到存储器存储盘。
    • 5. 发明授权
    • Trusted security zone access to peripheral devices
    • 可靠的安全区域访问外围设备
    • US08667607B2
    • 2014-03-04
    • US13556200
    • 2012-07-24
    • Lyle W. PaczkowskiWilliam M. ParselCarl J. PerssonMatthew C. Schlesener
    • Lyle W. PaczkowskiWilliam M. ParselCarl J. PerssonMatthew C. Schlesener
    • G06F13/00G06F17/30
    • G06F21/62G06F21/74G06F21/85
    • A method of trusted data communication. The method comprises executing a data communication application in a trusted security zone of a processor, wherein the processor is a component of a computer, commanding a controller of a peripheral device to execute a control application in a trusted security zone of the controller, wherein the controller is a component of the computer, commanding at least one of another peripheral device or a user interface device to not access a data bus of the computer, verifying that the controller is executing the control application in the trusted security zone of the controller, sending data from the processor to the controller over the data bus of the computer, and the controller one of transmitting the data sent by the processor on an external communication link, reading a memory storage disk, or writing to a memory storage disk.
    • 可信数据通信的方法。 该方法包括在处理器的可信安全区域中执行数据通信应用,其中处理器是计算机的组件,命令外围设备的控制器执行控制器的可信安全区域中的控制应用,其中, 控制器是计算机的组件,命令至少另一个外围设备或用户接口设备之一,以不访问计算机的数据总线,验证控制器正在执行控制器的可信安全区域中的控制应用程序,发送 通过计算机的数据总线从处理器到控制器的数据,以及控制器,用于在外部通信链路上发送由处理器发送的数据,读取存储器存储盘或写入到存储器存储盘。
    • 7. 发明授权
    • Persona management for mobile enabling services
    • Persona管理移动支持服务
    • US08126439B1
    • 2012-02-28
    • US11978834
    • 2007-10-30
    • Pallavur SankaranaraynanLyle W. PaczkowskiBrian D. MauerMatthew C. SchlesenerSean Alan Isaacson
    • Pallavur SankaranaraynanLyle W. PaczkowskiBrian D. MauerMatthew C. SchlesenerSean Alan Isaacson
    • H04M3/42
    • H04M3/42042H04L65/1063H04L65/1069H04L67/24H04L67/306
    • Multimedia services are provided to a subscriber within a domain of a communication network, wherein the subscriber utilizes one or more predetermined access terminals to access the multimedia services according to a network presence configuration of the subscriber. Each access terminal has respective multimedia capabilities, and the domain includes an application server for accessing the multimedia services. A user profile is established for the subscriber relating respective presence identifiers to a respective user service definition, wherein each user service definition specifies a set of the predetermined access terminals and respective multimedia services to be available for a respective network presence configuration. A current presence identifier of the subscriber is registered. The application server accesses the user profile to determine a user service definition corresponding to the current presence identifier. The subscriber initiates one of the multimedia services by sending a request to the application server from one of the access terminals in the set of predetermined access terminals. The application server interfaces with the multimedia service to obtain multimedia content from the initiated multimedia service. The application server then determines rules of service delivery according to the set of predetermined access terminals. The application server re-formats received multimedia content according to the rules of service delivery for the set of predetermined access terminals. The application server transmits re-formatted multimedia content to the corresponding access terminals.
    • 多媒体服务被提供给通信网络域内的用户,其中订户利用一个或多个预定接入终端根据用户的网络存在配置接入多媒体业务。 每个接入终端具有各自的多媒体功能,并且该域包括用于访问多媒体业务的应用服务器。 建立用户配置文件,用于将相应的存在标识符与相应的用户服务定义相关联,其中每个用户服务定义指定预定接入终端的集合和相应的多媒体业务可用于各自的网络存在配置。 注册用户的当前存在标识符。 应用服务器访问用户简档以确定与当前存在标识符相对应的用户服务定义。 用户通过从一组预定接入终端中的一个接入终端向应用服务器发送请求来发起多媒体服务之一。 应用服务器与多媒体业务接口,从发起的多媒体业务获取多媒体内容。 然后,应用服务器根据预定接入终端的集合来确定业务传送规则。 应用服务器根据用于一组预定接入终端的业务传送规则重新格式化接收到的多媒体内容。 应用服务器将重新格式化的多媒体内容发送到相应的接入终端。
    • 8. 发明授权
    • Call contention mediation after dropped call
    • 拨号后呼叫争用中介
    • US08755502B1
    • 2014-06-17
    • US11703384
    • 2007-02-07
    • Matthew C. SchlesenerBrian D. MauerPallavur SankaranaraynanSean A. Isaacson
    • Matthew C. SchlesenerBrian D. MauerPallavur SankaranaraynanSean A. Isaacson
    • H04M3/42
    • H04M3/42H04M2201/22H04M2203/2088H04M2207/18
    • A call contention manager mediates between call contentions that occur when two callers attempt to place a telephone call to one another at approximately the same time. The call contention manager may be implemented in or separate from a mobile switching center. The manager detects a call contention between two calls, and it determines whether the call contention is taking place in a window of time that follows shortly after at least one of the callers was involuntarily dropped from a call. If a call contention occurs within such a call drop window, it is resolved according to a post-drop protocol that enables a connection between the callers. If, however, the call contention occurs outside any call drop window, it is resolved without establishing a connection between the callers, for example by sending one or more of the contending calls to voicemail.
    • 呼叫争用管理员在两个呼叫者试图在大约相同的时间尝试相互电话呼叫时发生的呼叫争用之间进行调停。 呼叫争用管理器可以在移动交换中心中实现或者与移动交换中心分离。 管理员检测两个呼叫之间的呼叫争用,并且确定呼叫争用是否在至少一个呼叫者被非自愿从呼叫中丢弃之后的时间窗口中发生。 如果在这样一个呼叫中断窗口内发生呼叫争用,则根据启用呼叫者之间的连接的丢弃后协议进行解决。 然而,如果呼叫争用在任何呼叫丢弃窗口之外发生,则在没有建立呼叫者之间的连接的情况下被解决,例如通过将一个或多个竞争呼叫发送到语音邮件。
    • 9. 发明申请
    • WIRELESS COMMUNICATIONS DURING A WIRELESS COMMUNICATIONS DEVICE REBOOT
    • 无线通信在无线通信设备REBOOT期间的无线通信
    • US20130003610A1
    • 2013-01-03
    • US13569401
    • 2012-08-08
    • Brian D. MauerPallavur SankaranaraynanMatthew C. SchlesenerLyle Walter Paczkowski
    • Brian D. MauerPallavur SankaranaraynanMatthew C. SchlesenerLyle Walter Paczkowski
    • H04W88/02H04W4/22
    • G06F8/65G06F9/4401H04M1/72525H04M1/72536
    • A wireless communication device has first processing circuitry and second processing circuitry that are separate from one another. The wireless communication device transfers first wireless communications to a wireless network using the first processing circuitry. The wireless communication device identifies a reboot condition for the first processing circuitry and responsively provides a geographic location of the wireless communication device to the second processing circuitry and displays a user interface for communications using the second processing circuitry. The wireless communication device reboots the first processing circuitry while the user interface for communications is displayed. The wireless communication device transfers second wireless communications to the wireless network using the second processing circuitry while rebooting the first processing circuitry. The second wireless communications may comprise emergency communications including the geographic location of the wireless communication device.
    • 无线通信设备具有彼此分离的第一处理电路和第二处理电路。 无线通信设备使用第一处理电路将第一无线通信传输到无线网络。 所述无线通信设备识别所述第一处理电路的重新启动状态,并响应地将所述无线通信设备的地理位置提供给所述第二处理电路,并且使用所述第二处理电路显示用于通信的用户界面。 当显示用于通信的用户接口时,无线通信设备重新启动第一处理电路。 无线通信设备在重新启动第一处理电路的同时使用第二处理电路将第二无线通信传送到无线网络。 第二无线通信可以包括包括无线通信设备的地理位置的紧急通信。