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    • 7. 发明授权
    • Dynamically adapting wireless communication
    • 动态适应无线通信
    • US09596637B2
    • 2017-03-14
    • US13855600
    • 2013-04-02
    • Apple Inc.
    • Christopher J. HansenKee-Bong SongSyed A. MujtabaVinay R. MajjigiXiaowen Wang
    • H04W36/30H04W76/02
    • H04W36/30H04W76/15
    • In order to facilitate communication between an electronic device and another electronic device, the electronic device determines communication-quality metrics for a first connection in a wireless network based on received information from the other electronic device. Then, the electronic device calculates an overall communication-quality indicator for the first connection based on at least some of the communication-quality metrics. Moreover, the electronic device dynamically adapts the communication with the other electronic device based on the overall communication-quality indicator. For example, the electronic device may establish a second connection in a cellular-telephone network and may use the second connection to communicate with the other electronic device. Alternatively, the electronic device may provide the overall communication-quality indicator to the other electronic device and may at least partially transition the communication from the second connection in the cellular-telephone network to the first connection in the wireless network.
    • 为了促进电子设备与另一电子设备之间的通信,电子设备基于来自另一电子设备的接收信息来确定无线网络中的第一连接的通信质量度量。 然后,电子设备基于至少一些通信质量度量来计算用于第一连接的整体通信质量指示符。 此外,电子设备基于总体通信质量指示符动态地适应与另一电子设备的通信。 例如,电子设备可以在蜂窝电话网络中建立第二连接,并且可以使用第二连接来与另一个电子设备进行通信。 或者,电子设备可以将整体通信质量指示符提供给另一电子设备,并且可以至少部分地将通信从蜂窝电话网络中的第二连接转移到无线网络中的第一连接。
    • 8. 发明授权
    • Redundant transmission of real time data
    • 冗余传输实时数据
    • US09312988B2
    • 2016-04-12
    • US14187988
    • 2014-02-24
    • Apple Inc.
    • Ajoy K. SinghVinay R. MajjigiChristian W. MuckeTarik TabetPaul V. Flynn
    • H04L1/00H04L1/08
    • H04L1/08
    • A method for redundant transmission of real time data is provided. The method can include an edge node in a wireless network sending a first RTP packet including a first real time data frame to a second edge node. The method can further include the edge node determining that a radio link condition is sufficient to support redundant transmission of real time data to the second edge node. The method can additionally include the edge node, in response to determining that the radio link condition is sufficient to support redundant transmission of real time data, bundling the first real time data frame with a next sequential real time data frame that has not been previously sent to the second edge node in a second RTP packet at a PDCP layer of the edge node; and sending the second RTP packet to the second edge node.
    • 提供了实时数据冗余传输的方法。 该方法可以包括无线网络中的边缘节点,向第二边缘节点发送包括第一实时数据帧的第一RTP分组。 该方法还可以包括边缘节点确定无线电链路条件足以支持实时数据到第二边缘节点的冗余传输。 该方法可以另外包括边缘节点,以响应于确定无线电链路条件足以支持实时数据的冗余传输,将第一实时数据帧与先前未发送的下一个连续实时数据帧进行捆绑 在所述边缘节点的PDCP层处的第二RTP分组中的所述第二边缘节点; 以及将所述第二RTP分组发送到所述第二边缘节点。
    • 10. 发明申请
    • CONTROL SIGNALING OPTIMIZATION FOR LTE COMMUNICATIONS
    • 用于LTE通信的控制信号优化
    • US20150092563A1
    • 2015-04-02
    • US14502545
    • 2014-09-30
    • Apple Inc.
    • Tarik TabetVinay R. MajjigiChristian W. MuckeSyed A. Mujtaba
    • H04W72/04H04L5/00H04W52/02H04W28/02
    • H04W72/1289H04L5/0044H04L5/0053H04W28/0221Y02D70/00Y02D70/1262Y02D70/1264Y02D70/142Y02D70/144Y02D70/166Y02D70/22Y02D70/23Y02D70/24Y02D70/26
    • The disclosure describes procedures for allocating network resources for a mobile device communicating within a Long Term Evolution (LTE) network. The mobile device can be configured to decode a physical downlink shared channel (PDSCH), acquire first and second physical downlink control channel (PDCCH) decode indicators from a payload of the same PDSCH communication, decode a PDCCH for downlink control information (DCI) associated with a first application data type based on the first PDCCH decode indicator a second application data type based on the second PDCCH decode indicator. The first PDCCH decode indicator can identify an upcoming LTE subframe where the mobile device is required to decode the PDCCH for DCI associated VoLTE resource assignments and the second PDCCH decode indicator can identify an upcoming LTE subframe where the mobile device is required to decode the PDCCH for DCI associated with high bandwidth best effort (BE) data resource assignments.
    • 本公开描述了为在长期演进(LTE)网络内通信的移动设备分配网络资源的过程。 移动设备可以被配置为对物理下行链路共享信道(PDSCH)进行解码,从相同PDSCH通信的有效载荷获取第一和第二物理下行链路控制信道(PDCCH)解码指示符,对与下行链路控制信息(DCI)相关联的PDCCH进行解码 基于第一PDCCH解码指示符的第一应用数据类型,基于第二PDCCH解码指示符的第二应用数据类型。 第一PDCCH解码指示符可以识别即将到来的LTE子帧,其中移动设备需要解码用于DCI相关联的VoLTE资源分配的PDCCH,并且第二PDCCH解码指示符可以标识即将到来的LTE子帧,其中需要移动设备对PDCCH进行解码, 与高带宽尽力而为(BE)数据资源分配相关联的DCI。