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    • 5. 发明授权
    • Device initiated card provisioning via bearer independent protocol
    • 设备通过承载独立协议启动卡配置
    • US09560520B2
    • 2017-01-31
    • US14486718
    • 2014-09-15
    • Apple Inc.
    • Abhishek SenMadhusudan ChaudharyKarthik AnantharamanAbdul-Munem Al-KhudairiPrashant H. Vashi
    • H04W8/18H04W76/02
    • H04W8/183H04W76/11
    • A processor in a mobile wireless device provisions a user identity module (UIM) card in the mobile wireless device in response to a user command. The processor detects a user command to provision the UIM card and reads a provisioning status of the UIM card from a UIM card provisioning status file in the UIM card. When the provisioning status is “not provisioned”, the processor establishes a bearer independent protocol (BIP) data connection to a server in a wireless network and exchanges provisioning data between the server and the UIM card until the UIM card commands the processor to close the BIP data connection. In representative embodiments, the UIM card provisioning status file includes fields for a UIM card provisioning status, a UIM card software version and a UIM card provisioning date/time, and the processor updates the fields during provisioning.
    • 移动无线设备中的处理器响应于用户命令在移动无线设备中提供用户身份模块(UIM)卡。 处理器检测用户命令以配置UIM卡,并从UIM卡中的UIM卡配置状态文件读取UIM卡的配置状态。 当配置状态为“未配置”时,处理器建立到无线网络中的服务器的承载独立协议(BIP)数据连接,并在服务器和UIM卡之间交换供应数据,直到UIM卡命令处理器关闭 BIP数据连接。 在代表性实施例中,UIM卡供应状态文件包括用于UIM卡供应状态,UIM卡软件版本和UIM卡供应日期/时间的字段,并且处理器在供应期间更新字段。
    • 8. 发明授权
    • Adaptive data collection practices in a multi-processor device
    • 多处理器设备中的自适应数据采集实践
    • US09411396B2
    • 2016-08-09
    • US14137288
    • 2013-12-20
    • Apple Inc.
    • Ben-Heng JuangArjuna SivasithambaresanJesus A Gutierrez GomezKarthik AnantharamanSrinivasan Nimmala
    • G06F15/00G06F15/76G06F1/32G06F11/30
    • G06F1/3206G06F11/3024G06F11/3062
    • Adaptive data collection practices in a multi-processor device. The device may include a first processor and a second processor. The first processor may operate in any of a plurality of power states. The first processor may indicate to the second processor when it transitions to a different power state. The second processor may collect information relating to its operation. The second processor may collect the information according to different information collecting modes depending on in which power state the first processor is operating. Less information may be collected in an information collecting mode corresponding to a lower power state of the first processor than in an information collecting mode corresponding to a higher power state of the first processor.
    • 多处理器设备中的自适应数据采集实践。 该设备可以包括第一处理器和第二处理器。 第一处理器可以以多个功率状态中的任何一个工作。 当第一处理器转换到不同的功率状态时,第一处理器可以向第二处理器指示。 第二处理器可以收集与其操作有关的信息。 第二处理器可以根据不同的信息收集模式来收集信息,这取决于第一处理器在哪个功率状态下操作。 可以以对应于第一处理器的较高功率状态的信息收集模式中的与第一处理器的较低功率状态相对应的信息收集模式收集较少的信息。
    • 9. 发明授权
    • Mobile device which deletes duplicate preferred roaming list system records for improved performance
    • 删除重复首选漫游列表系统记录以提高性能的移动设备
    • US08798590B2
    • 2014-08-05
    • US13678701
    • 2012-11-16
    • Apple Inc.
    • Prashant H VashiVikram B YerrabommanahalliKarthik Anantharaman
    • H04M3/42H04W88/02H04W8/00
    • H04W8/00H04W8/18H04W88/02H04W88/06
    • A User Equipment (UE) device and associated method for operating a User Equipment (UE) in a wireless communication system. The UE may store a preferred roaming list in a memory. The preferred roaming list may comprise a plurality of system records which specify radio access technologies that can be used by the UE. The UE may examine the preferred roaming list to delete any duplicate system records in the PRL for respective geographic locations (GEOs). This may operate to mitigate the problems created by duplicate listing of system records within the PRL. In particular, the removal of redundant system records within the PRL may reduce or eliminate unneeded or undesired BSR algorithm execution. In addition, the removal of redundant system records within the PRL may reduce temporal service outages, since no service origination is allowed while the UE is attempting to find the most preferred system.
    • 用户设备(UE)设备和用于在无线通信系统中操作用户设备(UE)的相关方法。 UE可以将优选的漫游列表存储在存储器中。 优选的漫游列表可以包括指定可由UE使用的无线电接入技术的多个系统记录。 UE可以检查优选的漫游列表以删除PRL中针对各个地理位置(GEO)的任何重复的系统记录。 这样做可以减轻在PRL内重复列出系统记录所产生的问题。 特别地,去除PRL内的冗余系统记录可以减少或消除不需要的或不期望的BSR算法执行。 此外,由于在UE尝试找到最优选的系统时不允许服务发起,所以在PRL内删除冗余系统记录可以减少时间服务中断。
    • 10. 发明申请
    • Adaptive Data Collection Practices in a Multi-Processor Device
    • 多处理器设备中的自适应数据采集实践
    • US20140181471A1
    • 2014-06-26
    • US14137288
    • 2013-12-20
    • APPLE INC.
    • Ben-Heng JuangArjuna SivasithambaresanJesus A. Gutierrez GomezKarthik AnantharamanSrinivasan Nimmala
    • G06F9/38
    • G06F1/3206G06F11/3024G06F11/3062
    • Adaptive data collection practices in a multi-processor device. The device may include a first processor and a second processor. The first processor may operate in any of a plurality of power states. The first processor may indicate to the second processor when it transitions to a different power state. The second processor may collect information relating to its operation. The second processor may collect the information according to different information collecting modes depending on in which power state the first processor is operating. Less information may be collected in an information collecting mode corresponding to a lower power state of the first processor than in an information collecting mode corresponding to a higher power state of the first processor.
    • 多处理器设备中的自适应数据采集实践。 该设备可以包括第一处理器和第二处理器。 第一处理器可以以多个功率状态中的任何一个工作。 当第一处理器转换到不同的功率状态时,第一处理器可以向第二处理器指示。 第二处理器可以收集与其操作有关的信息。 第二处理器可以根据不同的信息收集模式来收集信息,这取决于第一处理器在哪个功率状态下操作。 可以以对应于第一处理器的较高功率状态的信息收集模式中的与第一处理器的较低功率状态相对应的信息收集模式收集较少的信息。