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    • 22. 发明授权
    • Adaptive receive diversity during discontinuous reception in mobile wireless device
    • 移动无线设备不连续接收期间的自适应接收分集
    • US09312943B2
    • 2016-04-12
    • US14249263
    • 2014-04-09
    • Apple Inc.
    • Syed A. MujtabaXiaowen WangYoung Jae KimVinay R. MajjigiJohnson O. SebeniTahir ShamimKarthik AnantharamanKee-Bong SongRomain Trilling
    • H04B7/08H04L12/26
    • H04B7/082H04B7/0817H04B7/0871H04L43/0823
    • A mobile wireless device adapts receive diversity during discontinuous reception based on downlink signal quality, page indicators and page messages. When the downlink signal quality exceeds a pre-determined threshold, the mobile wireless device decodes a page indicator channel through an initial antenna, and otherwise, decodes a paging channel through the initial antenna without decoding the page indicator channel. The mobile wireless device switches to decoding the paging channel through an alternate antenna when a page indicator decodes as an erasure. When a paging message received through a single antenna decodes with an incorrect error checking code, the mobile wireless devices enables receive diversity through multiple antennas for subsequent decoding. The mobile wireless device switches between single antenna reception and multiple antenna reception based on tracking multiple consecutive error checking code failures and successes.
    • 移动无线设备基于下行链路信号质量,页面指示符和寻呼消息来适应不连续接收期间的接收分集。 当下行链路信号质量超过预定阈值时,移动无线设备通过初始天线解码页面指示符信道,否则,通过初始天线对寻呼信道进行解码,而不对页面指示符信道进行解码。 当页面指示符被解码为擦除时,移动无线设备切换到通过替代天线解码寻呼信道。 当通过单个天线接收的寻呼消息用不正确的错误校验码进行解码时,移动无线设备能够通过多个天线进行接收分集以进行后续解码。 基于跟踪多个连续的错误检查代码故障和成功,移动无线设备在单天线接收和多天线接收之间切换。
    • 23. 发明申请
    • Antenna Switching System with Adaptive Switching Criteria
    • 具有自适应开关标准的天线开关系统
    • US20160094250A1
    • 2016-03-31
    • US14962084
    • 2015-12-08
    • Apple Inc.
    • Syed A. MujtabaKee-Bong Song
    • H04B1/00H04W64/00
    • H04B1/0064G01S19/13H04B1/1027H04B7/0808H04B7/082H04B7/0834H04W64/006H04W88/06
    • Apparatuses may be provided that contain wireless communications circuitry. The wireless communications circuitry may include radio-frequency transceiver circuitry coupled to multiple antennas. Signal strength measurements may be gathered using the antennas and corresponding signal strength difference measurements may be produced to reflect which of the antennas is exhibiting superior performing. Information may be gathered relating to the fading environment of the communications circuitry, such as whether the wireless communications circuitry is transitioning between a fast fading environment and a slow fading environment. For example, the wireless communications circuitry may further include a satellite positioning system receiver or an accelerometer, which may be used in gathering the information. The difference measurements may be filtered and compared to antenna switching criteria such as antenna switching thresholds. An antenna switching threshold may be adjusted in real time based at least in part on the gathered information.
    • 可以提供包含无线通信电路的装置。 无线通信电路可以包括耦合到多个天线的射频收发器电路。 可以使用天线收集信号强度测量值,并且可以产生对应的信号强度差异测量结果,以反映哪些天线表现出优异的性能。 可以收集关于通信电路的衰落环境的信息,诸如无线通信电路是否在快速衰落环境和慢衰落环境之间转变。 例如,无线通信电路还可以包括可用于收集信息的卫星定位系统接收机或加速度计。 差分测量可以被滤波并且与诸如天线切换阈值的天线切换标准进行比较。 可以至少部分地基于所收集的信息实时地调整天线切换阈值。
    • 24. 发明授权
    • In-device coexistence between radios
    • 无线电之间的设备间共存
    • US09297697B2
    • 2016-03-29
    • US13910471
    • 2013-06-05
    • Apple Inc.
    • Syed A. MujtabaWilliam S. Burchill
    • H04W28/04G01J3/453H04B15/00G01N21/3504
    • G01J3/453G01J2003/4534G01N21/3504G01N2201/06113H04B1/406
    • A method for facilitating in-device coexistence between radios is provided. The method can include a processor implemented on the wireless communication device defining a coexistence policy for a first radio and a second radio co-located on the wireless communication device; and providing the coexistence policy to a coexistence management controller on the first radio via an interface between the processor and the first radio. The method can further include the second radio providing state information for the second radio to the first radio via an interface between the first radio and the second radio. The method can additionally include the coexistence management controller on the first radio using the state information to control operation of the first radio in accordance with the coexistence policy to mitigate interference with the second radio.
    • 提供了一种便于无线电设备间共存的方法。 该方法可以包括在无线通信设备上实现的处理器,其定义第一无线电的共存策略和位于无线通信设备上的第二无线电; 以及通过所述处理器和所述第一无线电之间的接口,向所述第一无线电装置上的共存管理控制器提供所述共存策略。 该方法还可以包括第二无线电通过第一无线电和第二无线电之间的接口向第一无线电提供第二无线电的状态信息。 该方法还可以使用状态信息在第一无线电中包括共存管理控制器,以根据共存策略来控制第一无线电的操作,以减轻与第二无线电的干扰。
    • 29. 发明申请
    • SINGLE-RADIO DEVICE SUPPORTING COEXISTENCE BETWEEN MULTIPLE RADIO ACCESS TECHNOLOGIES
    • 单一无线电设备支持多种无线电接入技术之间的共同点
    • US20140242984A1
    • 2014-08-28
    • US14231479
    • 2014-03-31
    • APPLE INC.
    • Syed A. MujtabaWen ZhaoXiaowen WangVinay Majjigi
    • H04W76/04H04W48/18
    • H04W76/27H04W24/00H04W48/18H04W68/00H04W88/06
    • Electronic devices may be provided that contain wireless communication circuitry. The wireless communication circuitry may include radio-frequency transceiver circuitry coupled to antennas. An electronic device may include a baseband processor and other storage and processing circuitry that implements protocol stacks for handling multiple radio access technologies. The storage and processing circuitry may use the transceiver circuitry to convey data using a first radio access technology while periodically interrupting the conveying of the data to monitor a paging channel using a second radio access technology. In performing the paging channel monitoring operations, the storage and processing circuitry may enforce a time limit that ensures that operations using the first radio access technology are not disrupted more than desired.
    • 可以提供包含无线通信电路的电子设备。 无线通信电路可以包括耦合到天线的射频收发器电路。 电子设备可以包括基带处理器和实现用于处理多个无线电接入技术的协议栈的其他存储和处理电路。 存储和处理电路可以使用收发器电路使用第一无线电接入技术传送数据,同时周期性地中断数据的传送以使用第二无线电接入技术监视寻呼信道。 在执行寻呼信道监视操作时,存储和处理电路可以强制执行时间限制,确保使用第一无线电接入技术的操作不会超出所期望的中断。