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    • 1. 发明申请
    • HIGH ACCURACY MILLIMETER WAVE/RADIO FREQUENCY WIDEBAND IN-PHASE AND QUADRATURE GENERATION
    • 高精度毫米波/无线电频率宽带相位和平均发电
    • US20160065179A1
    • 2016-03-03
    • US14471608
    • 2014-08-28
    • QUALCOMM Incorporated
    • Mazhareddin TAGHIVANDTong ZHANGMohammad Mahdi GHAHRAMANI
    • H03H11/12H03H11/22
    • H03H11/1204H03H7/0153H03H7/21H03H11/22H03H17/0273H03H2218/04
    • Certain aspects of the present disclosure provide circuits for generating high accuracy millimeter wave or radio frequency (RF) wideband in-phase (I) and quadrature (Q) oscillating signals having acceptable amplitude and phase mismatch over process, voltage, and temperature (PVT) variations with reduced cost, area, and power consumption. In one example apparatus, a polyphase filter having a first stage and a second stage is provided. Each stage comprises resistive elements and capacitive elements. Certain aspects of the present disclosure provide for intentional resistive and/or capacitive value mismatch between the resistive or capacitive values of one or multiple stages such that the phase mismatch between the resulting I and Q signals may be reduced without degrading the amplitude mismatch. Certain aspects of the present disclosure provide for replacing the resistive elements in at least one stage with transistors operating in the triode region, where the on-resistance is controlled by a feedback network.
    • 本公开的某些方面提供用于产生在过程,电压和温度(PVT)上具有可接受的幅度和相位失配的高精度毫米波或射频(RF)宽带同相(I)和正交(Q)振荡信号的电路, 降低成本,面积和功耗的变化。 在一个示例性装置中,提供具有第一阶段和第二阶段的多相滤波器。 每个级包括电阻元件和电容元件。 本公开的某些方面提供一个或多个级的电阻或电容值之间的有意的电阻和/或电容值失配,使得可以在不降低幅度失配的情况下减小所产生的I和Q信号之间的相位失配。 本公开的某些方面提供了在三极管区域中操作的晶体管在至少一个级中替换电阻元件,其中导通电阻由反馈网络控制。
    • 2. 发明授权
    • Generalized polyphase channelization system
    • 广义多相通道化系统
    • US07403577B2
    • 2008-07-22
    • US10864201
    • 2004-06-09
    • Rajendra Kumar
    • Rajendra Kumar
    • H04L27/00
    • H04L5/06H03H17/0213H03H17/0273
    • A computation efficient polyphase channelization system enables one of many user FDMA signals to be channelized through multiple FFT response frequency bands forming an aggregate frequency band where K-point FFT channels are greater than the decimation factor M to produce FFT overlapped responses that have a smooth aggregate response without disjointed band gaps for reduced distortion using a clockwise commutator having M channels feeding M filter blocks, each of which having β polyphase filters, and having a ring switch to provide smooth filter responses that then drive β K-point FFTs to provide a β set of K vector FFT responses that are then combined in a post processing system for producing K channelized outputs.
    • 计算有效的多相信道化系统使得许多用户FDMA信号中的一个可以通过形成K点FFT信道大于抽取因子M的聚合频带的多个FFT响应频带被信道化,以产生具有平滑聚合的FFT重叠响应 使用具有M个通道的顺时针换向器的不相干带隙的响应,其馈送M个滤波器块,每个滤波器块具有β多相滤波器,并且具有环形开关以提供平滑的滤波器响应,然后驱动βK点FFT以提供β 一组K向量FFT响应,然后在用于产生K个信道化输出的后处理系统中组合。
    • 6. 发明授权
    • Digital linearizing system
    • 数字线性化系统
    • US07397404B2
    • 2008-07-08
    • US11544464
    • 2006-10-06
    • Roy G. Batruni
    • Roy G. Batruni
    • H03M1/84
    • H03H17/0294H03F1/32H03F2200/451H03H17/0211H03H17/0273H03M1/0626H03M1/1038
    • A signal processing system includes a receiving terminal configured to receive a digital signal comprising a plurality of samples associated with a plurality of original sampling times, wherein the original sampling times have a period of T, and a compensation module coupled to the receiving terminal. The compensation module is configured to generate, based on the digital signal, a nominal phase shifted signal having a plurality of nominal phase shifted samples associated with a plurality of phase shifted sampling times, wherein the plurality of phase shifted sampling times correspond to fractional intervals of the original sampling times. The compensation module is further configured to generate a compensated signal based at least in part on the digital signal and the nominal phase shifted signal.
    • 信号处理系统包括:接收终端,被配置为接收包括与多个原始采样时间相关联的多个样本的数字信号,其中原始采样时间具有周期T,以及耦合到接收终端的补偿模块。 补偿模块被配置为基于数字信号产生具有与多个相移采样时间相关联的多个标称相移采样的标称相移信号,其中多个相移采样时间对应于 原始采样次数。 补偿模块还被配置为至少部分地基于数字信号和标称相移信号来产生补偿信号。
    • 7. 发明申请
    • Digital linearizing system
    • 数字线性化系统
    • US20070146179A1
    • 2007-06-28
    • US11544464
    • 2006-10-06
    • Roy Batruni
    • Roy Batruni
    • H03M1/06
    • H03H17/0294H03F1/32H03F2200/451H03H17/0211H03H17/0273H03M1/0626H03M1/1038
    • A signal processing method includes receiving a digital signal includes a plurality of samples associated with a plurality of original sampling times, wherein the original sampling times have a period of T; generating, based on the digital signal, a nominal phase shifted signal having a plurality of nominal phase shifted samples associated with a plurality of phase shifted sampling times, wherein the plurality of phase shifted sampling times correspond to fractional intervals of the original sampling times; and generating a compensated signal based at least in part on the digital signal and the nominal phase shifted signal. A signal processing system includes a receiving terminal configured to receive a digital signal comprising a plurality of samples associated with a plurality of original sampling times, wherein the original sampling times have a period of T, and a compensation module coupled to the receiving terminal. The compensation module is configured to generate, based on the digital signal, a nominal phase shifted signal having a plurality of nominal phase shifted samples associated with a plurality of phase shifted sampling times, wherein the plurality of phase shifted sampling times correspond to fractional intervals of the original sampling times. The compensation module is further configured to generate a compensated signal based at least in part on the digital signal and the nominal phase shifted signal.
    • 一种信号处理方法,包括接收包括与多个原始采样时间相关联的多个采样的数字信号,其中原始采样时间具有T的周期; 基于所述数字信号产生具有与多个相移采样时间相关联的多个标称相移样本的标称相移信号,其中所述多个相移采样时间对应于所述原始采样时间的分数间隔; 以及至少部分地基于数字信号和标称相移信号产生补偿信号。 信号处理系统包括:接收终端,被配置为接收包括与多个原始采样时间相关联的多个样本的数字信号,其中原始采样时间具有周期T,以及耦合到接收终端的补偿模块。 补偿模块被配置为基于数字信号产生具有与多个相移采样时间相关联的多个标称相移采样的标称相移信号,其中多个相移采样时间对应于 原始采样次数。 补偿模块还被配置为至少部分地基于数字信号和标称相移信号来产生补偿信号。
    • 8. 发明授权
    • Device and method for the digital demodulation of a signal received by selecting a filter and digital communication receiver comprising same
    • 通过选择包含滤波器的数字通信接收机接收信号进行数字解调的装置和方法
    • US07170957B2
    • 2007-01-30
    • US10157157
    • 2002-05-30
    • Christophe MoyPascal Le Corre
    • Christophe MoyPascal Le Corre
    • H03D1/04H04B1/16G06F17/00G06F17/10
    • H04L7/0029H03H17/0273H04L7/0054H04L27/2338
    • The device (10) for digital demodulation comprises a polyphase filter (14) comprising a set of N distinct elementary digital filters (Hi) and means (16) of selection, for each block of an elementary digital filter (Hi). These latter comprise means (28) for computing an error signal, means (30) for comparing performance indicators for the digital filters arising from the error signals and means (30) for determining the elementary digital filter (Hi) to be implemented in respect of the following block as a function of the result of the comparison.The digital filters (Hi) are ordered. They are chosen according to the order of the filters, as a function of the result of the comparison performed on the performance indicators for the elementary digital filters (Hi) implemented in respect of at least one previous block.Application to a mobile telephone or base station.
    • 用于数字解调的装置(10)包括多相滤波器(14),其包括一组N个不同的基本数字滤波器(H SUB)和用于选择的装置(16),用于基本数字滤波器 过滤器(H>。)。 这些后者包括用于计算误差信号的装置(28),用于比较由误差信号产生的数字滤波器的性能指标的装置(30)和用于确定基本数字滤波器的装置(30) >)作为比较结果的函数关于下面的块来实现。 数字滤波器(H> i)被排序。 根据对至少一个先前块实现的基本数字滤波器(H SUB)的性能指标的比较结果的函数,根据滤波器的顺序来选择它们。 。 应用于移动电话或基站。
    • 9. 发明申请
    • Frequency converter for a spectral conversion of a start signal and method for a spectral conversion of a start signal
    • 用于起始信号的频谱转换的频率转换器和用于起始信号的频谱转换的方法
    • US20060159202A1
    • 2006-07-20
    • US11300263
    • 2005-12-13
    • Marco Breiling
    • Marco Breiling
    • H04L27/22
    • H04L27/2647H03D7/00H03H17/0273
    • A frequency converter for a spectral conversion of a start signal having a current frequency to an end signal having a target frequency, wherein the start signal includes an I component having a plurality of I component values and a Q component having a plurality of Q component values, comprises means for selecting a plurality of sub-signals based on the I component or the Q component, wherein a sub-signal, depending on a raster, includes selectable I component values, and wherein another sub-signal, depending on the raster, includes selected Q component values. Further, the frequency converter comprises means for weighting each of the plurality of sub-signals, wherein means for weighting is implemented to weight each of the plurality of sub-signals with one weighting factor each to obtain a plurality of weighting signals. Additionally, the frequency converter comprises means for summing the plurality of weighting signals to obtain the end signal having the target frequency. By such a frequency converter and a corresponding method for a spectral conversion, it is possible, in simply realizable way regarding numerics and circuit engineering, to provide a spectral frequency converter to convert a start signal having a current frequency to an end signal having a target frequency.
    • 一种用于将具有当前频率的起始信号的频谱转换为具有目标频率的结束信号的频率转换器,其中所述起始信号包括具有多个I分量值的I分量和具有多个Q分量值的Q分量 包括用于基于I分量或Q分量来选择多个子信号的装置,其中取决于光栅的子信号包括可选择的I分量值,并且其中根据光栅的另一个子信号, 包括所选Q组件值。 此外,频率转换器包括用于对多个子信号中的每一个进行加权的装置,其中实施用于加权的装置,以一个加权因子对每个子信号进行加权,以获得多个加权信号。 此外,频率转换器包括用于对多个加权信号求和以获得具有目标频率的结束信号的装置。 通过这种频率转换器和相应的频谱转换方法,可以以简单可实现的方式进行数学和电路工程,以提供频谱转换器来将具有当前频率的起始信号转换成具有目标的结束信号 频率。
    • 10. 发明申请
    • Efficient and flexible oversampled filterbank with near perfect reconstruction constraint
    • 高效灵活的过采样滤波器组具有接近完美的重构约束
    • US20040246994A1
    • 2004-12-09
    • US10458389
    • 2003-06-09
    • Michael Steven MunozCyrus Asfandiar DhallaZoltan Zvi Stroll
    • H04J001/00
    • H03H17/0266H03H17/0273
    • A filterbank system is provided for reordering subbands of a wideband digital signal. The filterbank system extracts the subbands from a wideband digital input signal into an even channel number group of even channel number subbands and an odd channel number group of odd channel number subbands. The separation of even and odd channel number subbands provides an even channel grouping with guard bands between the even channel number subbands and an odd channel number grouping with guard bands between the odd channel number subbands. The filterbank system then reorders the even channel number subbands and the odd channel number subbands. The reordered subbands are then combined by combining the reordered even channel number subbands and odd channel number subbands into a wideband digital output signal.
    • 提供滤波器组系统用于重新排列宽带数字信号的子带。 滤波器组系统从宽带数字输入信号将子带提取成偶数信道数量组的偶数信道数子带和奇数信道数子带的奇数信道数组。 偶数和奇数信道数子带的分离提供偶数信道分组与偶信道数子带之间的保护带和奇数信道号分组与奇数信道数子带之间的保护带。 滤波器组系统然后重新排列偶数频道号子频带和奇数频道号子频带。 然后通过将重新排序的偶数信道数子带和奇数信道数子带组合成宽带数字输出信号来组合重新排序的子带。