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    • 2. 发明授权
    • Method and device for charging energy storage devices
    • 蓄能装置的充电方法和装置
    • US08671291B2
    • 2014-03-11
    • US13160662
    • 2011-06-15
    • Wayne W. BallantyneGregory R. BlackRobert M. JohnsonRussell L. Simpson
    • Wayne W. BallantyneGregory R. BlackRobert M. JohnsonRussell L. Simpson
    • G06F1/26
    • G06F1/266
    • Disclosed is a method (200) for charging energy storage devices. The method (200) can include a battery charging method in a power supply client connected by a data bus to a power supply host. The method (200) includes the steps of: detecting (210) a state of the power supply host; determining (220) a limit of current from the host to the client; allocating (230) a portion of the limit to a battery charging current; and charging (240) a battery of the client at the battery charging current such that the current from the host is greater than a recommended limit and less than or equal to the determined amount. Thus a client device can confidently charge at a rate which causes the port current to exceed a recommended limit, such as a USB port limit of 500 mA, when allowed by conditions of the host device. Advantageously, the method can help to expedite the charging time of a client battery, notwithstanding the number of other clients connected to the same host device for charging, thus minimizing the wait time of a user.
    • 公开了一种用于对能量存储装置进行充电的方法(200)。 方法(200)可以包括在通过数据总线连接到电源主机的电源客户端中的电池充电方法。 方法(200)包括以下步骤:检测(210)电源主机的状态; 确定(220)从主机到客户端的电流限制; 将极限的一部分(230)分配(230)到电池充电电流; 并以所述电池充电电流对所述客户端的电池进行充电(240),使得来自所述主机的电流大于推荐限度且小于或等于所确定的量。 因此,当主机设备的条件允许时,客户端设备可以以使端口电流超过推荐限制(例如500mA的USB端口限制)的速率自信地充电。 有利地,该方法可以帮助加快客户端电池的充电时间,尽管连接到相同主机设备的其他客户端的数量用于计费,从而最小化用户的等待时间。
    • 5. 发明申请
    • METHODS AND APPARATUS FOR SERVING CONTENT TO A WIRELESS DEVICE
    • 用于服务无线设备的方法和装置
    • US20140050137A1
    • 2014-02-20
    • US13586360
    • 2012-08-15
    • William P. Alberth, JR.Wayne W. Ballantyne
    • William P. Alberth, JR.Wayne W. Ballantyne
    • H04H20/71H04W4/22
    • H04W4/06H04W4/90
    • Methods and apparatus for serving content to a wireless device (106) are disclosed. In an embodiment, a gateway (114), or any other suitable device or system, determines that at least one message (e.g., a text or text-like message) containing a first pointer (e.g., a unicast URL) to the content (e.g., a web page) is to be transmitted via an emergency alert system (e.g., CMAS). In response thereto, the gateway (114) obtains the content using the first pointer and generates a second different pointer (e.g., a multicast/broadcast URL) to the content. The gateway (114) provides at least a portion of the at least one message and the second pointer for transmission via the emergency alert system (118). The gateway (114) also provides the content for transmission via a wireless multicast/broadcast channel (120) based on the second pointer.
    • 公开了向无线设备(106)提供内容的方法和装置。 在一个实施例中,网关(114)或任何其它合适的设备或系统确定包含内容的第一指针(例如,单播URL)的至少一个消息(例如,文本或文本消息) 例如,网页)将通过紧急警报系统(例如,CMAS)发送。 响应于此,网关(114)使用第一指针获得内容,并且生成第二不同的指针(例如,多播/广播URL)到内容。 网关(114)提供至少一个消息和第二指示符的至少一部分,用于经由紧急警报系统(118)传输。 网关(114)还基于第二指示器经由无线多播/广播信道(120)提供用于传输的内容。
    • 6. 发明授权
    • Method and apparatus for surreptitiously triggering the collection of data from a lost wireless communications device equipped with audio and/or video collection means
    • 用于暗中触发从配备有音频和/或视频采集装置的丢失的无线通信设备收集数据的方法和装置
    • US08396453B2
    • 2013-03-12
    • US11687248
    • 2007-03-16
    • Benjamin SnowWilliam S. EichenbergerVon A. MockWayne W. Ballantyne
    • Benjamin SnowWilliam S. EichenbergerVon A. MockWayne W. Ballantyne
    • H04M1/66H04M1/68H04M1/16
    • H04W64/00G01S19/09G01S19/17
    • A method for locating a wireless communications device WCD (102). The method includes the step of receiving at the WCD (102) a wireless transmission comprising a first auto-location trigger signal. The WCD (102), responsive to the first auto-location trigger signal, operates in an auto-location mode. The auto-location mode includes the automatic collection and communication of predetermined first data, such as audio, video, and GPS location data. After the automatic collection and communication step of the first data is complete, the WCD (102) enters into a standby mode. The standby mode continues until a state detection device (206) of the WCD (102) detects a change in the state of the WCD (102). These changes in state are exclusive of the wireless transmission comprising the first auto-location trigger signal. The change(s) in state produce a second auto-location trigger signal, which causes the automatic collection and communication of a second data that is the same or similar to the first data.
    • 一种用于定位无线通信设备WCD(102)的方法。 该方法包括在WCD(102)处接收包括第一自动定位触发信号的无线传输的步骤。 响应于第一自动定位触发信号的WCD(102)在自动定位模式下操作。 自动定位模式包括自动收集和通信诸如音频,视频和GPS位置数据之类的预定的第一数据。 在第一数据的自动收集和通信步骤完成之后,WCD(102)进入待机模式。 待机模式继续,直到WCD(102)的状态检测装置(206)检测到WCD(102)的状态的改变。 这些状态变化不包括包括第一自动定位触发信号的无线传输。 状态变化产生第二自动定位触发信号,这导致自动收集和通信与第一数据相同或相似的第二数据。
    • 7. 发明申请
    • METHOD FOR CONSERVING RESOURCES DURING WIRELESS HANDOVER OF A DUAL MODE MOBILE STATION
    • 在双向移动台无线切换期间保存资源的方法
    • US20120236831A1
    • 2012-09-20
    • US13485336
    • 2012-05-31
    • Shahab M. SayeediWayne W. Ballantyne
    • Shahab M. SayeediWayne W. Ballantyne
    • H04W36/30
    • H04W36/0022H04W36/385H04W88/06
    • A method is described that is for handing over a multi-mode mobile device from a first network technology to a second network technology. The method includes initiating by the multi-mode mobile device a first packet session in a first wireless network and detecting by a multi-mode mobile device a second wireless network supporting a different access network technology. The method also includes determining a Quality of Service requirement and completing pre-registration session establishment procedures for a second session in the second wireless network when the first session includes at least one of a QoS sensitive service and real time service by the first wireless network and mobile device and after completion of the pre-registration session establishment procedures the multi-mode mobile device receives service from the first wireless network and remains dormant on the second wireless network.
    • 描述了一种用于将多模式移动设备从第一网络技术切换到第二网络技术的方法。 该方法包括由多模式移动设备发起第一无线网络中的第一分组会话,并由多模移动设备检测支持不同接入网技术的第二无线网络。 所述方法还包括当所述第一会话包括所述第一无线网络的QoS敏感服务和实时服务中的至少一个时,确定所述服务质量要求并完成所述第二无线网络中的第二会话的预注册会话建立过程,以及 移动设备,并且在完成预注册会话建立过程之后,多模式移动设备从第一无线网络接收服务并在第二无线网络上保持休眠。
    • 10. 发明申请
    • Method and apparatus for surreptitiously triggering the collection of data from a lost wireless communications device equipped with audio and/or video collection means
    • 用于暗中触发从配备有音频和/或视频采集装置的丢失的无线通信设备收集数据的方法和装置
    • US20080132245A1
    • 2008-06-05
    • US11687248
    • 2007-03-16
    • Benjamin SnowWilliam S. EichenbergerVon A. MockWayne W. Ballantyne
    • Benjamin SnowWilliam S. EichenbergerVon A. MockWayne W. Ballantyne
    • H04Q7/20
    • H04W64/00G01S19/09G01S19/17
    • A method for locating a wireless communications device WCD (102). The method includes the step of receiving at the WCD (102) a wireless transmission comprising a first auto-location trigger signal. The WCD (102), responsive to the first auto-location trigger signal, operates in an auto-location mode. The auto-location mode includes the automatic collection and communication of predetermined first data, such as audio, video, and GPS location data. After the automatic collection and communication step of the first data is complete, the WCD (102) enters into a standby mode. The standby mode continues until a state detection device (206) of the WCD (102) detects a change in the state of the WCD (102). These changes in state are exclusive of the wireless transmission comprising the first auto-location trigger signal. The change(s) in state produce a second auto-location trigger signal, which causes the automatic collection and communication of a second data that is the same or similar to the first data.
    • 一种用于定位无线通信设备WCD(102)的方法。 该方法包括在WCD(102)处接收包括第一自动定位触发信号的无线传输的步骤。 响应于第一自动定位触发信号的WCD(102)在自动定位模式下操作。 自动定位模式包括自动收集和通信诸如音频,视频和GPS位置数据之类的预定的第一数据。 在第一数据的自动收集和通信步骤完成之后,WCD(102)进入待机模式。 待机模式继续,直到WCD(102)的状态检测装置(206)检测到WCD(102)的状态的改变。 这些状态变化不包括包括第一自动定位触发信号的无线传输。 状态变化产生第二自动定位触发信号,这导致自动收集和通信与第一数据相同或相似的第二数据。