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    • 52. 发明申请
    • USSD Transport Method and Device
    • USSD运输方式和设备
    • US20110182220A1
    • 2011-07-28
    • US12693268
    • 2010-01-25
    • Gregory R. BlackMark J. CarlsonValeriy F. Marchevsky
    • Gregory R. BlackMark J. CarlsonValeriy F. Marchevsky
    • H04W52/02
    • H04L67/26H04W4/20Y02D30/40Y02D70/1224Y02D70/1242Y02D70/1262Y02D70/142Y02D70/22
    • An USSD transporting method (200) and mobile computing device (410) are described. The method (200) can include the steps of: providing a data pushing operation (210) over a universal supplementary services data (USSD) channel from the application server to the mobile device client; and initiating a data pulling operation (220) over an internet protocol (IP) channel by the mobile device client, in response to the pushing operation. Advantageously, for short data transfers, such as application server push notifications, USSD messages require lower power drain than packet data, due to the longer time to transition to an RRC idle state after the data transfer is completed. Also, push notifications can be sent over USSD without an open IP session, thereby saving the client from having to maintain a persistent IP session, while employing alternate pulling transport means such as wireless LAN which require lower power drain than a wide area network.
    • USSD传输方法(200)和移动计算设备(410)被描述。 方法(200)可以包括以下步骤:通过通用补充业务数据(USSD)信道从应用服务器向移动设备客户端提供数据推送操作(210); 以及响应于所述推送操作,由所述移动设备客户端通过因特网协议(IP)通道启动数据拉取操作(220)。 有利的是,对于诸如应用服务器推送通知之类的短数据传输,由于在完成数据传输之后转换到RRC空闲状态的更长时间,USSD消息需要比分组数据更低的功率消耗。 此外,推送通知可以通过USSD发送,而不需要开放的IP会话,从而节省客户端不必维护持续的IP会话,同时采用诸如无线局域网的备用牵引传输手段,这些传输方式比广域网要求更低的功率消耗。
    • 54. 发明申请
    • Device and Method for Temperature Monitoring and Warning
    • 温度监测和警告的装置和方法
    • US20100330950A1
    • 2010-12-30
    • US12772369
    • 2010-05-03
    • Andrew K. WellsDavid M. BoldtGregory R. Black
    • Andrew K. WellsDavid M. BoldtGregory R. Black
    • G08B17/00H04W4/22
    • H04B1/3883H04M1/72536H04M1/72577H04M2250/12H04W52/0264Y02D70/40
    • A wireless communication device and method adapted for temperature monitoring and warning is disclosed. In its simplest form, it can include: providing (510) a multi-mode communication device including an unrestricted mode having an unrestricted operation temperature range and a restricted mode having a restricted operation temperature range; determining (520) if a temperature in proximity to an energy storage device is in at least one of the restricted operation temperature range and the unrestricted operation temperature range; periodically entering (530) the restricted mode when in the restricted operation temperature range and entering the unrestricted mode when in the unrestricted operation temperature range; and entering (540) the unrestricted mode when a user attempts to make an emergency call. Advantageously, this method allows safe battery operation, while allowing a user to make emergency calls.
    • 公开了适用于温度监测和警告的无线通信装置和方法。 在其最简单的形式中,它可以包括:提供(510)包括具有不受限制的操作温度范围的无限制模式和具有受限操作温度范围的限制模式的多模式通信装置; 确定(520)如果靠近能量存储装置的温度处于受限制的操作温度范围和不受限制的操作温度范围中的至少一个; 在限制运行温度范围内定期进入(530)限制模式,并在无限制运行温度范围内进入无限制模式; 并在用户尝试进行紧急呼叫时进入(540)无限制模式。 有利地,该方法允许安全的电池操作,同时允许用户进行紧急呼叫。
    • 55. 发明申请
    • Mobile Computing Device and Method with Enhanced Poling Management
    • 具有增强型极化管理的移动计算设备和方法
    • US20100299455A1
    • 2010-11-25
    • US12778287
    • 2010-05-12
    • Cyrus P. MasterStephen J. SewerynekGregory R. Black
    • Cyrus P. MasterStephen J. SewerynekGregory R. Black
    • G06F15/16
    • H04W52/0216Y02D70/1242Y02D70/1262Y02D70/142Y02D70/22
    • A method (150) and device (200) with enhanced poling management are described, to help lengthen the battery life of a mobile computing device running a plurality of applications in data communication with an application server. The method (150) includes the steps of: providing (155) a poling manager configured to receive for each of the plurality of applications a predetermined poling interval and tolerance window; monitoring (160) data communication activity of the mobile computing device; determining (165), for each of the plurality of running applications, the time elapsed since the previous synchronization; and synchronizing (170) the application if at least one of the following conditions occurs: the time elapsed since the previous synchronization is substantially equal to the predetermined poling interval for the application, and communication activity is detected, and the time elapsed since the previous synchronization is within the tolerance window for the application. By the use of intelligent poling management, such as synchronizing and running multiple applications together, substantial energy savings can be gained, by turning on the transceiver circuitry only when necessary and minimizing and/or eliminating unnecessary synchronizations.
    • 描述了具有增强的极化管理的方法(150)和设备(200),以帮助延长与应用服务器的数据通信中运行多个应用的​​移动计算设备的电池寿命。 所述方法(150)包括以下步骤:提供(155)被配置为为所述多个应用中的每一个接收预定的极化间隔和公差窗口的极化管理器(155) (160)所述移动计算设备的数据通信活动; 对于所述多个正在运行的应用程序中的每一个,确定(165)从先前同步起经过的时间; 并且如果发生以下情况中的至少一个,则同步(170)应用:从先前同步起经过的时间基本上等于应用的预定极化间隔,并且检测通信活动,以及从先前同步起经过的时间 在应用程序的容限窗口内。 通过使用智能极化管理,例如同步和运行多个应用程序,可以通过仅在必要时打开收发器电路并最小化和/或消除不必要的同步来实现大量的能量节省。