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    • 1. 发明申请
    • FRONTEND MODULE FOR TIME DIVISION DUPLEX (TDD) CARRIER AGGREGATION
    • 用于时分双工(TDD)载波聚合的FRONTEND模块
    • US20130039229A1
    • 2013-02-14
    • US13303985
    • 2011-11-23
    • Chester ParkJung-Fu Cheng
    • Chester ParkJung-Fu Cheng
    • H04J3/00
    • H04B1/44H04B1/005H04B1/0458H04B1/18
    • A frontend module for Time Division Duplex (TDD) with Carrier Aggregation (CA), wherein the frontend module reuses the band selection filters for the aggregated bands and provides switched connections to antenna and transmitter/receiver according to the Uplink (UL)/Downlink (DL) configuration. The use of switches on both the antenna side and the transmitter/receiver side of the frontend module enables the reuse of the band selection filters. The frontend module according to the present invention reduces the number of required filters to only one filter for each TDD-CA Component Carrier (CC) band. Thus, the frontend module avoids unnecessary band selection filters, and thereby also controls the cost of implementation of frontend modules in wireless units operating in the TDD-CA mode.
    • 用于具有载波聚合(CA)的时分双工(TDD)的前端模块,其中前端模块重新使用聚合频带的频带选择滤波器,并根据上行链路(UL)/下行链路(UL)/下行链路 DL)配置。 在前端模块的天线侧和发射机/接收机侧使用开关使得能够重用带选择滤波器。 根据本发明的前端模块将针对每个TDD-CA分量载波(CC)频带的所需滤波器数量减少到仅一个滤波器的数量。 因此,前端模块避免了不必要的频带选择滤波器,从而也控制在TDD-CA模式下工作的无线单元中的前端模块的实现成本。
    • 2. 发明授权
    • Frontend module for time division duplex (TDD) carrier aggregation
    • 用于时分双工(TDD)载波聚合的前端模块
    • US08737376B2
    • 2014-05-27
    • US13303985
    • 2011-11-23
    • Chester ParkJung-Fu Cheng
    • Chester ParkJung-Fu Cheng
    • H04J1/00
    • H04B1/44H04B1/005H04B1/0458H04B1/18
    • A frontend module for Time Division Duplex (TDD) with Carrier Aggregation (CA), wherein the frontend module reuses the band selection filters for the aggregated bands and provides switched connections to antenna and transmitter/receiver according to the Uplink (UL)/Downlink (DL) configuration. The use of switches on both the antenna side and the transmitter/receiver side of the frontend module enables the reuse of the band selection filters. The frontend module according to the present invention reduces the number of required filters to only one filter for each TDD-CA Component Carrier (CC) band. Thus, the frontend module avoids unnecessary band selection filters, and thereby also controls the cost of implementation of frontend modules in wireless units operating in the TDD-CA mode.
    • 用于具有载波聚合(CA)的时分双工(TDD)的前端模块,其中前端模块重新使用聚合频带的频带选择滤波器,并根据上行链路(UL)/下行链路(UL)/下行链路 DL)配置。 在前端模块的天线侧和发射机/接收机侧使用开关使得能够重用带选择滤波器。 根据本发明的前端模块将针对每个TDD-CA分量载波(CC)频带的所需滤波器数量减少到仅一个滤波器的数量。 因此,前端模块避免了不必要的频带选择滤波器,从而也控制在TDD-CA模式下工作的无线单元中的前端模块的实现成本。
    • 3. 发明授权
    • Method and device for iterative blind wideband sampling
    • 迭代盲宽带采样的方法和装置
    • US08885783B2
    • 2014-11-11
    • US13430973
    • 2012-03-27
    • Chester Park
    • Chester Park
    • H04L7/00H04L27/00H04W16/14H03M7/30H03M1/18H04B1/00H03M1/12
    • H04L27/0006H03M1/124H03M1/18H03M7/30H03M7/3062H04B1/001H04W16/14
    • Devices and methods for iteratively sampling a wideband signal in order to recover one or more narrowband signals are disclosed. In one aspect, a wideband signal is received and the signal is sampled using a sampling device, which includes an amplifier with an initial gain level, to produce a plurality of sampled signals. A first set of narrowband signals may be recovered from the plurality of sampled signals. Then, the wideband signal is re-sampled to produce a second plurality of sampled signals. The re-sampling includes increasing the gain of the amplifier to a second level and suppressing a component of the wideband signal. A second set of narrowband signals may then be recovered from the second set of sampled signals.
    • 公开了用于对宽带信号进行迭代采样以恢复一个或多个窄带信号的装置和方法。 在一个方面,接收宽带信号并且使用包括具有初始增益电平的放大器的采样装置对信号进行采样,以产生多个采样信号。 可以从多个采样信号中恢复第一组窄带信号。 然后,重新采样宽带信号以产生第二多个采样信号。 重采样包括将放大器的增益增加到第二电平并抑制宽带信号的分量。 然后可以从第二组采样信号中恢复第二组窄带信号。
    • 4. 发明授权
    • Inter-carrier bandwidth control for mitigating IQ imbalance
    • 用于减轻IQ不平衡的载波间带宽控制
    • US08798177B2
    • 2014-08-05
    • US13098954
    • 2011-05-02
    • Chester ParkLars SundströmJim Svensson
    • Chester ParkLars SundströmJim Svensson
    • H04K1/10H04L27/28
    • H04L27/3863H04B1/28H04B1/30H04B17/21H04L5/001H04L27/2634H04L27/2647
    • Digital IQ imbalance estimation and compensation is facilitated by shaping the frequency response of receiver branches. In particular, in a multi-carrier receiver, the frequency response of signal processing elements in at least one receiver branch is set to not fully attenuate received signals in a frequency band of interest. The frequency band of interest is greater than the carrier bandwidth of the received signal processed by that receiver branch. In some embodiments, the received signal is not attenuated, and adjacent interfering signals are partially attenuated. This allows information regarding the interfering signals to appear in an IQ imbalance-induced, inter-carrier image of the signals in anther receiver branch, facilitating digital estimation and compensation of IQ imbalance.
    • 通过对接收机分支的频率响应进行整形,便于数字IQ不平衡估计和补偿。 特别地,在多载波接收机中,将至少一个接收机支路中的信号处理元件的频率响应设置为不完全衰减感兴趣频带中的接收信号。 感兴趣的频带大于由该接收器分支处理的接收信号的载波带宽。 在一些实施例中,接收的信号不被衰减,并且相邻的干扰信号被部分衰减。 这允许关于干扰信号的信息出现在IQ不平衡引起的另一个接收机分支中信号的载波间图像中,有助于IQ失衡的数字估计和补偿。
    • 5. 发明授权
    • Radio environment scanner
    • 无线电环境扫描仪
    • US08219056B2
    • 2012-07-10
    • US12553710
    • 2009-09-03
    • Lars SundströmThomas OlssonLeif WilhelmssonChester Park
    • Lars SundströmThomas OlssonLeif WilhelmssonChester Park
    • H04B17/00H04K3/00
    • H04W24/08H04B17/318H04B17/382
    • A device may include a measurement receiver, a communication receiver, and a transmitter. The measurement receiver may include a receiver (RX) down-conversion component to receive an amplified signal from a low-noise amplifier of the communication receiver, selectively receive a signal from a first local oscillator associated with the communication receiver or a second local oscillator associated with the transmitter, and down-convert the amplified signal to baseband using the received signal from the first local oscillator or the second local oscillator. The measurement receiver may further include a delta-sigma analog-to-digital converter (ADC) to provide low quantization noise only for a particular frequency range to be measured, and a control component to configure the delta-sigma ADC to provide the low quantization noise at the particular frequency range.
    • 设备可以包括测量接收器,通信接收器和发射器。 测量接收机可以包括接收器(RX)下变频部件,以从通信接收机的低噪声放大器接收放大的信号,选择性地接收来自与通信接收器相关联的第一本地振荡器的信号或与第二本地振荡器相关联的信号 并且使用来自第一本地振荡器或第二本地振荡器的接收信号将放大的信号下变频到基带。 测量接收机还可以包括仅用于要测量的特定频率范围的低量化噪声的delta-sigma模数转换器(ADC),以及配置Δ-ΣADC以提供低量化的控制部件 在特定频率范围内的噪声。
    • 9. 发明授权
    • Controllable frequency offset for inphase and Quadrature (IQ) imbalance estimation
    • 同步和正交(IQ)不平衡估计的可控频偏
    • US08548096B2
    • 2013-10-01
    • US12983006
    • 2010-12-31
    • Chester ParkJim Svensson
    • Chester ParkJim Svensson
    • H04L27/38H04L27/14H04L23/00
    • H04L27/2659H04L27/0014H04L27/2647H04L27/28H04L2027/0026
    • Embodiments of user equipment and methods for determining IQ imbalance parameters are described. In some embodiments, a method for determining in-phase (I) and Quadrature (Q) imbalance (IQ imbalance) parameters based on a known signal in a dual-carrier receiver using at least one controllable frequency offset includes receiving a known signal modulated onto a first radio frequency (RF) carrier frequency and a second RF carrier frequency different than the first RF carrier frequency; downconverting the known signal to a baseband signal for the first and second carriers by conversion from the respective RF carrier frequencies to an intermediate frequency (IF) using a common RF local oscillator (LO) and by further conversion from IF to baseband using carrier specific IF LOs, wherein as a controllable frequency offset is used as a part of the conversion from at least one of RF to IF and IF to baseband through the LOs; removing any controllable frequency offset from the baseband signal for the first and second carriers to produce representations of the received signals of the first and second carriers; and deriving IQ imbalance parameters for each representation of the received signals of the first and second carriers using a least square estimate.
    • 描述用于确定IQ不平衡参数的用户设备和方法的实施例。 在一些实施例中,基于使用至少一个可控频率偏移的双载波接收机中的已知信号来确定同相(I)和正交(Q)不平衡(IQ不平衡)参数的方法包括:接收已调制到 第一射频(RF)载波频率和与第一RF载波频率不同的第二RF载波频率; 通过使用公共RF本地振荡器(LO)从相应的RF载波频率转换到中频(IF)将已知信号下变频为第一和第二载波的基带信号,并且通过使用载波专用IF进一步从IF到基带的转换 LO,其中作为可控频率偏移用作从RF到IF和IF中的至少一个到通过LO的基带的转换的一部分; 从第一和第二载波的基带信号中去除任何可控频率偏移,以产生第一和第二载波的接收信号的表示; 以及使用最小平方估计来导出第一和第二载波的接收信号的每个表示的IQ不平衡参数。