会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Reuse of Training Sequence Between Frequency-Adjacent Radio Signals
    • 频率相邻无线电信号之间的训练序列重用
    • US20130083711A1
    • 2013-04-04
    • US13689284
    • 2012-11-29
    • William O. Camp, JR.Toby John BowenLeland Scott Bloebaum
    • William O. Camp, JR.Toby John BowenLeland Scott Bloebaum
    • H04W72/02
    • H04W72/02H04L25/0224H04L25/03
    • Methods and apparatus for processing received signals in a multi-carrier system are disclosed. An exemplary method includes estimating one or more first propagation channel coefficients based on a training sequence in each of one or more first slots received over a first radio channel, equalizing signal samples from one or more second slots received over a second radio channel immediately frequency-adjacent to the first radio channel, using the first propagation channel coefficients, and demodulating user data bits from the equalized signal samples. In some embodiments, the training sequence is located at a fixed position in each of the one or more first slots and user data bits are demodulated from a directly corresponding position in each of the second slots. Improved data rates are thus achieved by constraining radio carriers in a multi-carrier system to frequency-adjacent channels and eliminating training symbols from one of the signals.
    • 公开了一种在多载波系统中处理接收信号的方法和装置。 一种示例性方法包括基于在第一无线电信道上接收的一个或多个第一时隙中的每一个中的训练序列来估计一个或多个第一传播信道系数,来均衡来自在第二无线电信道上接收的一个或多个第二时隙的信号样本, 与第一无线电信道相邻,使用第一传播信道系数,以及从均衡信号样本中解调用户数据比特。 在一些实施例中,训练序列位于一个或多个第一时隙的每一个中的固定位置,并且用户数据位从每个第二时隙中的直接对应位置解调。 因此,通过将多载波系统中的无线电载波限制到频率相邻信道并从一个信号消除训练符号来实现改进的数据速率。
    • 3. 发明授权
    • Evolved EDGE receiver
    • 演进的EDGE接收机
    • US08385865B2
    • 2013-02-26
    • US12190052
    • 2008-08-12
    • William O. Camp, Jr.Toby John BowenLeland Scott Bloebaum
    • William O. Camp, Jr.Toby John BowenLeland Scott Bloebaum
    • H04B7/08H04B7/00H04B1/26H03J7/32H04M1/00
    • H04B1/30
    • The wireless receiver of the present invention accommodates dual-carrier Evolved EDGE without significantly impacting existing receiver architectures. The inventive receiver comprises a shared local oscillator and two image-rejecting downconverters. The local oscillator generates a local oscillator frequency between two carrier frequencies of adjacent radio channels. The receiver receives a signal in each of the adjacent radio channels. In a dual-carrier mode, a first image-rejecting downconverter uses the local oscillator frequency to downconvert a first signal received in the first radio channel while rejecting a second signal received in the second radio channel. A second image-rejecting downconverter uses the local oscillator frequency to downconvert the second signal while rejecting the first signal. In a diversity mode, the first and second image-rejecting downconverters use the local oscillator frequency to downconvert the signal received in one of the radio channels while rejecting the signal received in the other radio channel.
    • 本发明的无线接收机容纳双载波演进EDGE,而不会显着影响现有的接收机架构。 本发明的接收机包括共享本地振荡器和两个图像拒绝下变频器。 本地振荡器在相邻无线电信道的两个载波频率之间产生本地振荡器频率。 接收机在每个相邻无线电信道中接收信号。 在双载波模式中,第一图像拒绝下变频器使用本地振荡器频率来下变频在第一无线电信道中接收的第一信号,同时拒绝在第二无线电信道中接收的第二信号。 第二个图像拒绝下变频器使用本地振荡器频率来下转换第二信号,同时拒绝第一个信号。 在分集模式中,第一和第二图像拒绝下变频器使用本地振荡器频率来下变频在一个无线电信道中接收的信号,同时拒绝在另一个无线电信道中接收的信号。
    • 4. 发明授权
    • Adaptively selecting signal constellations for multi-carrier edge
    • 自适应选择多载波边缘的信号星座
    • US08102810B2
    • 2012-01-24
    • US12210507
    • 2008-09-15
    • Leland Scott BloebaumWilliam O. Camp, Jr.Toby John Bowen
    • Leland Scott BloebaumWilliam O. Camp, Jr.Toby John Bowen
    • H04W72/04
    • H04L27/0008H04L27/2614
    • The wireless communication device and corresponding method described herein selectively switches between a single-frequency mode, such as appropriate for an EDGE network, and a multiple-frequency mode, such as appropriate for a multi-carrier EDGE network. Accordingly, a transmitting wireless communication device selectively switches between a single-channel mapping unit, used during the single-frequency mode, and a multi-channel mapping unit, used during the multiple-frequency mode. The multi-channel mapping unit modulates input data to output a modulated data stream for each of multiple adjacent frequency channels that, when combined, produce a multiple-frequency signal with reduced peak-to-average ratio. A receiving wireless communication device selectively switches between a single-channel demodulator, used during the single-frequency mode, and a multi-channel demodulator, used during the multiple-frequency mode.
    • 本文描述的无线通信设备和相应的方法选择性地在适合于EDGE网络的单频模式与诸如适用于多载波EDGE网络的多频模式之间进行切换。 因此,发送无线通信设备选择性地在单频模式下使用的单信道映射单元与在多频模式下使用的多信道映射单元之间进行切换。 多通道映射单元调制输入数据以输出多个相邻频率信道中的每一个的调制数据流,当组合时,产生具有降低的峰均比的多频信号。 接收无线通信设备选择性地在单频模式下使用的单信道解调器和在多频模式下使用的多信道解调器之间进行切换。
    • 5. 发明申请
    • Adaptively Selecting Signal Constellations for Multi-Carrier Edge
    • 适应性选择多载波边缘的信号星座
    • US20100069022A1
    • 2010-03-18
    • US12210507
    • 2008-09-15
    • Leland Scott BloebaumWilliam O. Camp, JR.Toby John Bowen
    • Leland Scott BloebaumWilliam O. Camp, JR.Toby John Bowen
    • H04B7/02
    • H04L27/0008H04L27/2614
    • The wireless communication device and corresponding method described herein selectively switches between a single-frequency mode, such as appropriate for an EDGE network, and a multiple-frequency mode, such as appropriate for a multi-carrier EDGE network. Accordingly, a transmitting wireless communication device selectively switches between a single-channel mapping unit, used during the single-frequency mode, and a multi-channel mapping unit, used during the multiple-frequency mode. The multi-channel mapping unit modulates input data to output a modulated data stream for each of multiple adjacent frequency channels that, when combined, produce a multiple-frequency signal with reduced peak-to-average ratio. A receiving wireless communication device selectively switches between a single-channel demodulator, used during the single-frequency mode, and a multi-channel demodulator, used during the multiple-frequency mode.
    • 本文描述的无线通信设备和相应的方法选择性地在适合于EDGE网络的单频模式与诸如适用于多载波EDGE网络的多频模式之间进行切换。 因此,发送无线通信设备选择性地在单频模式下使用的单信道映射单元与在多频模式下使用的多信道映射单元之间进行切换。 多通道映射单元调制输入数据以输出多个相邻频率信道中的每一个的调制数据流,当组合时,产生具有降低的峰均比的多频信号。 接收无线通信设备选择性地在单频模式下使用的单信道解调器和在多频模式下使用的多信道解调器之间进行切换。
    • 6. 发明授权
    • Reuse of training sequence between frequency-adjacent radio signals
    • 频率相邻无线电信号之间的训练序列重用
    • US08369289B2
    • 2013-02-05
    • US12191798
    • 2008-08-14
    • William O. Camp, Jr.Toby John BowenLeland Scott Bloebaum
    • William O. Camp, Jr.Toby John BowenLeland Scott Bloebaum
    • H04W4/00
    • H04W72/02H04L25/0224H04L25/03
    • Methods and apparatus for processing received signals in a multi-carrier system are disclosed. An exemplary method includes estimating one or more first propagation channel coefficients based on a training sequence in each of one or more first slots received over a first radio channel, equalizing signal samples from one or more second slots received over a second radio channel immediately frequency-adjacent to the first radio channel, using the first propagation channel coefficients, and demodulating user data bits from the equalized signal samples. In some embodiments, the training sequence is located at a fixed position in each of the one or more first slots and user data bits are demodulated from a directly corresponding position in each of the second slots. Improved data rates are thus achieved by constraining radio carriers in a multi-carrier system to frequency-adjacent channels and eliminating training symbols from one of the signals.
    • 公开了一种在多载波系统中处理接收信号的方法和装置。 一种示例性方法包括基于在第一无线电信道上接收的一个或多个第一时隙中的每一个中的训练序列来估计一个或多个第一传播信道系数,来均衡来自在第二无线电信道上接收的一个或多个第二时隙的信号样本, 与第一无线电信道相邻,使用第一传播信道系数,以及从均衡信号样本中解调用户数据比特。 在一些实施例中,训练序列位于一个或多个第一时隙的每一个中的固定位置,并且用户数据位从每个第二时隙中的直接对应位置解调。 因此,通过将多载波系统中的无线电载波限制到频率相邻信道并从一个信号消除训练符号来实现改进的数据速率。
    • 7. 发明申请
    • Reuse of Training Sequence Between Frequency-Adjacent Radio Signals
    • 频率相邻无线电信号之间的训练序列重用
    • US20100040027A1
    • 2010-02-18
    • US12191798
    • 2008-08-14
    • William O. Camp, JR.Toby John BowenLeland Scott Bloebaum
    • William O. Camp, JR.Toby John BowenLeland Scott Bloebaum
    • H04B7/216
    • H04W72/02H04L25/0224H04L25/03
    • Methods and apparatus for processing received signals in a multi-carrier system are disclosed. An exemplary method includes estimating one or more first propagation channel coefficients based on a training sequence in each of one or more first slots received over a first radio channel, equalizing signal samples from one or more second slots received over a second radio channel immediately frequency-adjacent to the first radio channel, using the first propagation channel coefficients, and demodulating user data bits from the equalized signal samples. In some embodiments, the training sequence is located at a fixed position in each of the one or more first slots and user data bits are demodulated from a directly corresponding position in each of the second slots. Improved data rates are thus achieved by constraining radio carriers in a multi-carrier system to frequency-adjacent channels and eliminating training symbols from one of the signals.
    • 公开了一种在多载波系统中处理接收信号的方法和装置。 一种示例性方法包括基于在第一无线电信道上接收的一个或多个第一时隙中的每一个中的训练序列来估计一个或多个第一传播信道系数,来均衡来自在第二无线电信道上接收的一个或多个第二时隙的信号样本, 与第一无线电信道相邻,使用第一传播信道系数,以及从均衡信号样本中解调用户数据比特。 在一些实施例中,训练序列位于一个或多个第一时隙的每一个中的固定位置,并且用户数据位从每个第二时隙中的直接对应位置解调。 因此,通过将多载波系统中的无线电载波限制到频率相邻信道并从一个信号消除训练符号来实现改进的数据速率。
    • 8. 发明授权
    • Mobile device control of mobile television broadcast signals to multiple destinations
    • 移动设备控制移动电视广播信号到多个目的地
    • US07551918B2
    • 2009-06-23
    • US11163645
    • 2005-10-26
    • Toby John BowenLeland Scott Bloebaum
    • Toby John BowenLeland Scott Bloebaum
    • H04M3/42
    • H04N21/41407H04N5/782H04N21/4227H04N21/47214
    • A portable mobile communications device for controlling the destination of mobile TV programs broadcast by a mobile TV service provider includes a mobile TV device, a processor running a mobile TV redirect application communicable with the mobile TV service provider, and a user interface for controlling the mobile TV device and the mobile TV redirect application such that mobile TV broadcast programs can be simultaneously redirected to an external device in response to input received by the user interface and sent to the mobile TV service provider. The external device can include a home media server or a computer coupled to and communicable with the mobile TV service provider via the Internet.
    • 用于控制由移动电视服务提供商广播的移动电视节目的目的地的便携式移动通信设备包括移动TV设备,运行可与移动TV服务提供商通信的移动TV重定向应用的处理器,以及用于控制移动电话 电视设备和移动电视重定向应用,使得移动电视广播节目可以响应于由用户界面接收的输入并被发送到移动电视服务提供商而被同时重定向到外部设备。 外部设备可以包括家庭媒体服务器或者经由因特网耦合到移动电视服务提供商并且可与移动电视服务提供商通信的计算机。
    • 10. 发明申请
    • MOBILE DEVICE POWER CONTROL FOR DUAL TRANSFER MODE (DTM)
    • 用于双向传输模式的移动设备功率控制(DTM)
    • US20070281727A1
    • 2007-12-06
    • US11421282
    • 2006-05-31
    • Toby John Bowen
    • Toby John Bowen
    • H04Q7/20
    • H04W52/346H04W52/14H04W52/288H04W52/367
    • A system and method of redistributing power output by a portable mobile communications device while operating in dual transfer mode (DTM) is disclosed. The device determines if more than one uplink slot is active and if DTM is active. If so, power can be separately regulated for packet switched and carrier switched uplink slots. The device determines whether the circuit switched slot is being used for a voice call that is not in a handsfree or speakerphone mode and evaluates factors associated with the current operating conditions. New power settings are calculated based on the mode for the active circuit switched slot and the factors associated with the current operating conditions of the device. The new power settings are then applied to the active uplink slots such that power is re-distributed on a per slot basis that is not necessarily divided equally among all active slots.
    • 公开了一种在双重传送模式(DTM)中操作时由便携式移动通信设备重新分配功率输出的系统和方法。 设备确定是否有多个上行链路时隙处于活动状态,并且DTM是否处于活动状态。 如果是,分组交换和载波切换上行链路时隙可以单独调节功率。 设备确定电路交换插槽是否被用于不在免提或免提电话模式的语音呼叫,并评估与当前操作条件相关的因素。 基于有源电路交换插槽的模式和与设备的当前工作条件相关的因素计算新的功率设置。 然后将新的功率设置应用于活动上行链路时隙,使得功率在每个时隙的基础上被重新分配,其不一定在所有活动时隙之间平均分配。