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    • 6. 发明授权
    • Wireless tune away based upon wireless device location
    • 基于无线设备位置无线调出
    • US08731605B1
    • 2014-05-20
    • US12758190
    • 2010-04-12
    • Manoj ShettySachin R. VargantwarDeveshkumar Narendrapratap RaiBhagwan Singh Khanka
    • Manoj ShettySachin R. VargantwarDeveshkumar Narendrapratap RaiBhagwan Singh Khanka
    • H04M1/00
    • H04W48/18H04L69/28H04W4/023H04W88/06
    • What is disclosed is a method of operating a wireless communication device. The method includes, while at an initial location, entering a first wireless communication mode that requires tuning to a first frequency spectrum. In response to entering the first wireless communication mode, the method includes setting a timer for monitoring a second wireless communication mode. When the timer expires, the method includes determining if a present location of the wireless communication device is beyond a threshold distance from the initial location. If the present location is beyond the threshold distance from the initial location, then the method includes tuning away from the first frequency spectrum to a second frequency spectrum for the second wireless communication mode and monitoring information for the second wireless communication mode, and if the present location is not beyond the threshold distance from the initial location, then resetting the timer for monitoring the second wireless communication mode.
    • 公开的是一种操作无线通信设备的方法。 该方法包括在初始位置时,进入需要调谐到第一频谱的第一无线通信模式。 响应于进入第一无线通信模式,该方法包括设置用于监视第二无线通信模式的定时器。 当定时器到期时,该方法包括确定无线通信设备的当前位置是否超出距离初始位置的阈值距离。 如果当前位置超出距离初始位置的阈值距离,则该方法包括从第一频谱调谐到用于第二无线通信模式的第二频谱和用于第二无线通信模式的监视信息,并且如果存在 位置不超出距离初始位置的阈值距离,然后重置用于监视第二无线通信模式的定时器。
    • 7. 发明授权
    • Method and system for using multi-channel communication links
    • 使用多通道通信链路的方法和系统
    • US08675513B1
    • 2014-03-18
    • US12827604
    • 2010-06-30
    • Sachin R. VargantwarBhagwan KhankaManoj Shetty
    • Sachin R. VargantwarBhagwan KhankaManoj Shetty
    • H04L12/26
    • H04L1/20H04L1/0009H04L1/0033H04L2001/0096H04W76/15H04W76/20
    • A mobile station and a radio access network (RAN) use a single-channel forward link and a single-channel reverse link for a communication session. If the quality of the communication session degrades, the single-channel forward link is replaced with a multi-channel forward link and/or the single-channel reverse link is replaced with a multi-channel reverse link. The multi-channel forward link may include a first forward link channel and a second forward link channel, each with a higher coding gain than that of the single-channel forward link, to provide an aggregate data rate that is substantially the same as that of the single-channel forward link. The multi-channel reverse link may include a first reverse link channel and a second reverse link channel, each with a higher coding gain than that of the single-channel reverse link, to provide an aggregate data rate that is substantially the same as that of the single-channel reverse link.
    • 移动台和无线电接入网(RAN)使用单信道前向链路和用于通信会话的单信道反向链路。 如果通信会话的质量下降,则单信道正向链路被多信道正向链路替代,和/或单信道反向链路被多信道反向链路替代。 多信道正向链路可以包括第一前向链路信道和第二前向链路信道,每个信道具有比单信道前向链路更高的编码增益,以提供与 单通道前向链路。 多信道反向链路可以包括第一反向链路信道和第二反向链路信道,每个具有比单信道反向链路的编码增益更高的编码增益,以提供与基本相同的聚合数据速率, 单通道反向链路。
    • 8. 发明授权
    • Method and system of sending power control commands
    • 发送功率控制命令的方法和系统
    • US08565805B1
    • 2013-10-22
    • US12960108
    • 2010-12-03
    • Sachin R. VargantwarManoj Shetty
    • Sachin R. VargantwarManoj Shetty
    • H04B7/00
    • H04W52/265H04W52/04
    • While a first and second entity are engaging in a communication session on a wireless link, the first entity may be sending a series of power control commands (PCCs) directed to the second entity at a first transmission rate. Additionally, the first entity may monitor an actual and expected transmission-power adjustment of the second entity. Based on this monitored actual and expected transmission-power adjustment, the first entity may decide to alter the PCC transmission scheme for the second entity. For instance, if the monitored actual and expected transmission-power adjustment differs by a threshold extent, the power-controlling entity may decide to increase the PCC transmission rate for the power-controlled entity and/or increase the transmission-power adjustment instructed by PCCs directed to the second entity. In response, the first entity may begin sending the series of PCCs directed to the second entity according to the altered PCC transmission scheme.
    • 当第一和第二实体在无线链路上进行通信会话时,第一实体可以以第一传输速率发送指向第二实体的一系列功率控制命令(PCC)。 另外,第一实体可以监视第二实体的实际和期望的传输功率调整。 基于该监视的实际和期望的传输功率调整,第一实体可以决定改变第二实体的PCC传输方案。 例如,如果监视的实际和期望的发射功率调整差异达阈值范围,则功率控制实体可以决定增加功率控制实体的PCC传输速率和/或增加由PCC指示的传输功率调整 针对第二实体。 作为响应,第一实体可以根据改变的PCC传输方案开始发送指向第二实体的一系列PCC。