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    • 2. 发明授权
    • CIC qam modulator
    • CIC qam调制器
    • US07161989B1
    • 2007-01-09
    • US10402788
    • 2003-03-29
    • David Bruce IsaksenMark Fong
    • David Bruce IsaksenMark Fong
    • H04L27/04
    • H04L25/05H03C3/40H04L27/362H04L27/364
    • An apparatus for modulating a digital input signal having a pre-assigned symbol rate and having a baseband carrier frequency by using a single sample clock signal. The pre-assigned symbol rate is selected from the group consisting of a plurality of symbol rates. The apparatus in a baseband mode comprises: (a) an Interpolate_by_2_Nyquist Filter block configured to double the pre-assigned symbol rate, to perform Nyquist filtering operation, and configured to output an Inphase (I) and a Quadrature (Q) components of the pre-assigned signal having the double symbol rate; (b) a Complex Shaper block configured to pre-compensate the spectrum of I and Q components of the signal having the double symbol rate in advance for a spectrum distortion caused by the apparatus; ©) a Cascaded Integrated Comb (CIC) Interpolator filter configured to increase by an interpolation R factor the sample rate of the signal as compared with a sample rate of the baseband carrier; (d) a Phase Shifter configured to compensate a phase of interpolated by R signal for a known quadrature error; (e) an Inphase (I) channel and Quadrature (Q) channel Gain blocks configured to pre-compensate the I and Q components of the interpolated by R signal for a known gain difference circuit between the I and Q channel gains; (f) an I and Q channel DC offset blocks configured to pre-compensate I and Q components of the interpolated by R signal for a known DC offset difference circuit between I and Q channel DC offset blocks; and (g) a Controller block configured to supply a plurality of control signals to the apparatus. In the passband mode, I and Q channel Gains are set to one, and I and Q channel DC offsets are set to zero.
    • 一种用于通过使用单个采样时钟信号来调制具有预分配码元速率并具有基带载波频率的数字输入信号的装置。 从由多个符号率组成的组中选择预分配符号率。 基带模式的装置包括:(a)Interpolate_by_2_Nyquist滤波器块,被配置为使预先分配的符号速率加倍,以执行奈奎斯特滤波操作,并且被配置为输出预先分配的符号速率的同相(I)和正交(Q)分量 具有双符号率的分配信号; (b)复杂整形器块,被配置为对由所述装置引起的频谱失真预先补偿具有双符号速率的信号的I和Q分量的频谱; (C))级联集成梳状(CIC)插值器滤波器,其被配置为与基带载波的采样率相比增加信号的采样率的内插R因子; (d)移相器,被配置为针对已知的正交误差补偿由R信号内插的相位; (e)同相(I)通道和正交(Q)通道增益块,其被配置为对I和Q通道增益之间的已知增益差电路预先补偿由R信号内插的I和Q分量; (f)I和Q通道DC偏移块,被配置为对I和Q通道DC偏移块之间的已知DC偏移差分电路预先补偿由R信号内插的I和Q分量; 以及(g)被配置为向所述装置提供多个控制信号的控制器块。 在通带模式下,I和Q通道增益设置为1,I和Q通道DC偏移设置为零。
    • 3. 发明授权
    • Minimization of phase equivocation in burst modems
    • 突发调制解调器中相位偏差的最小化
    • US07012972B1
    • 2006-03-14
    • US10134245
    • 2002-04-27
    • David Bruce IsaksenByron Esten DanzerMark Fong
    • David Bruce IsaksenByron Esten DanzerMark Fong
    • H04L27/14
    • H04L27/2331H04L27/0014H04L2027/0024H04L2027/0053H04L2027/0069H04L2027/0073
    • In a system comprising a subscriber (sub) carrier tracking loop and a hub carrier tracking loop, a method and apparatus for resolving phase equivocation. The method comprises the following steps: (A) acquiring a phase and a frequency of a hub carrier frequency by utilizing the sub carrier tracking loop; (B) estimating an instant absolute frequency offset between a received symbol point and a corresponding plant point; (C) averaging the instant absolute frequency offset over a plurality of received symbols; (D) storing the averaged estimated frequency offset in a frequency register of the sub carrier tracking loop; (E) locking the sub carrier tracking loop on the hub carrier frequency by compensating for the stored averaged estimated frequency offset; (F) estimating an instant absolute phase error between a received symbol point and a corresponding plant point; (G) averaging the instant absolute phase error over a plurality of received symbols; (H) resolving phase equivocation by adjusting the averaged absolute phase error, if the averaged absolute phase error is at least equal to a predetermined equivocation phase threshold; and (I) completing the tracking of the hub carrier frequency by the locked sub carrier tracking loop.
    • 在包括用户(子)载波跟踪环路和集线器载波跟踪环路的系统中,一种用于解决相位偏差的方法和装置。 该方法包括以下步骤:(A)通过利用副载波跟踪环来获取集线器载波频率的相位和频率; (B)估计接收到的符号点和对应植物点之间的瞬时绝对频率偏移; (C)对多个接收符号的瞬时绝对频率偏移进行平均; (D)将平均估计频率偏移存储在子载波跟踪环路的频率寄存器中; (E)通过补偿所存储的平均估计频率偏移来将子载波跟踪环锁定在集线器载波频率上; (F)估计接收到的符号点和相应植物点之间的瞬时绝对相位误差; (G)在多个接收到的符号上平均瞬时绝对相位误差; (H)如果平均的绝对相位误差至少等于预定的等式相位阈值,则通过调整平均绝对相位误差来解决相位偏差; 和(I)通过锁定子载波跟踪环完成对于载波频率的跟踪。
    • 4. 发明授权
    • Flexible multimode QAM modulator
    • 灵活多模QAM调制器
    • US06973141B1
    • 2005-12-06
    • US09972180
    • 2001-10-04
    • David Bruce IsaksenByron Esten DanzerMark Fong
    • David Bruce IsaksenByron Esten DanzerMark Fong
    • H04L25/03H04L27/00H04L27/20H04L27/34H04L27/36
    • H04L25/03834H04L27/0008H04L27/3488H04L27/364H04L27/367
    • A method of baseband/passband digital modulation for a data transmission system wherein a plurality of data symbols is transmitted over a transmission channel at a symbol rate. The method comprises the following steps: (1) generating a plurality of I and Q components of symbols by mapping an input bit stream comprising a plurality of digital codewords into a QAM constellation; (2) selecting a passband or a baseband mode; and (3) generating an analog output signal in the passband or baseband mode. The step of selecting the passband or the baseband mode depends on the complexity of QAM constellation. If QAM constellation includes less than 64 QAM plant points, the passband mode is selected, and if QAM constellation includes more than 64 QAM plant points, the baseband mode is selected. If the QAM constellation includes less than 64 QAM plant points, initially selecting the passband mode until a D/A conversion speed reaches a maximum passband conversion speed, and until an output symbol rate reaches a maximum passband symbol output rate, and subsequently switching to the baseband mode in order to double the maximum passband conversion speed and to double the maximum passband symbol output rate.
    • 一种用于数据传输系统的基带/通带数字调制方法,其中通过传输信道以符号速率发送多个数据符号。 该方法包括以下步骤:(1)通过将包括多个数字码字的输入比特流映射到QAM星座中来产生符号的多个I和Q分量; (2)选择通带或基带模式; 和(3)在通带或基带模式中产生模拟输出信号。 选择通带或基带模式的步骤取决于QAM星座的复杂度。 如果QAM星座包含少于64个QAM工厂点,则选择通带模式,如果QAM星座包含超过64个QAM工厂点,则选择基带模式。 如果QAM星座包括小于64个QAM工厂点,则首先选择通带模式,直到D / A转换速度达到最大通带转换速度,并且直到输出符号速率达到最大通带符号输出速率,并且随后切换到 基带模式,以便将最大通带转换速度加倍,并将双通道带符号输出速率提高一倍。
    • 6. 发明授权
    • Control algorithm using hysteresis sub-states in QAM modems
    • 在QAM调制解调器中使用滞后子状态的控制算法
    • US07835259B1
    • 2010-11-16
    • US11805903
    • 2007-05-26
    • David Bruce IsaksenMark Fong
    • David Bruce IsaksenMark Fong
    • H04J11/00
    • H04L25/0305H04L27/3854H04L2027/0036
    • An apparatus for automated acquisition of a QAM signal. The apparatus employs a State machine progressing from an initial State to a final State. The State Machine comprises: (A) an AGC State further comprising a Minimum Sub-State further comprising: Coarse Estimate Sub-State; and an AGC Lock Sub-State further comprising Maximum Sub-State; (B) a Clock 1 State further comprising a Minimum Sub-State, and a Maximum Sub-State; (C) a Clock 2 State further comprising: a Minimum Sub-State; and a Maximum Sub-State; and (D) a Blind State further comprising a Minimum Sub-State; a Threshold Sub-State further comprising a Maximum Sub-State; and a Hysteresis Sub-State.
    • 一种用于自动采集QAM信号的装置。 该装置采用从初始状态到最终状态的状态机。 状态机包括:(A)进一步包括最小子状态的AGC状态,还包括:粗估计子状态; 以及进一步包括最大子状态的AGC锁定子状态; (B)还包括最小子状态和最大子状态的时钟1状态; (C)时钟2状态还包括:最小子状态; 和最大子状态; 和(D)进一步包括最低子国的盲国; 进一步包括最大子状态的阈值子状态; 和滞后子状态。
    • 8. 发明授权
    • Modes of operations in QAM modems using hysteresis sub-states
    • 使用滞后子状态的QAM调制解调器中的操作模式
    • US07970080B1
    • 2011-06-28
    • US12319773
    • 2009-01-12
    • David B. IsaksenMark Fong
    • David B. IsaksenMark Fong
    • H03D3/22H04L27/22
    • H04L25/0305H04L7/033H04L27/3854H04L2027/0036
    • A method of automated acquisition of a QAM signal is provided. The method employs a State machine progressing from an initial State to a final State. The State machine comprises: a symbol timing recovery loop; a carrier loop; a coarse frequency loop; and an equalizer. The method comprises: (A) Performing an automatic gain control (AGC) operation on an incoming QAM signal; (B) Performing a symbol timing recovery of an input QAM signal by adjusting a sampling clock of the symbol timing recovery loop; (C) Performing a Blind Equalization of the QAM signal without carrier lock; (D) Performing a carrier recovery of the QAM signal; and (E) Performing a decision directed equalization (DDE) of the QAM signal by updating a set of coefficients of the equalizer by using a decision based algorithm.
    • 提供了一种自动采集QAM信号的方法。 该方法采用从初始状态到最终状态的状态机。 状态机包括:符号定时恢复循环; 载体环路 粗频率回路; 和均衡器。 该方法包括:(A)对输入的QAM信号执行自动增益控制(AGC)操作; (B)通过调整符号定时恢复循环的采样时钟来执行输入QAM信号的符号定时恢复; (C)执行无载波锁定的QAM信号的盲均衡; (D)执行QAM信号的载波恢复; 和(E)通过使用基于决策的算法来更新均衡器的一组系数来执行QAM信号的判决定向均衡(DDE)。