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    • 1. 发明申请
    • Methods and Systems for Generating Filter Coefficients and Configuring Filters
    • 用于生成滤波器系数和配置滤波器的方法和系统
    • US20130317833A1
    • 2013-11-28
    • US13983892
    • 2012-02-08
    • Mark F. Davis
    • Mark F. Davis
    • G10L19/04
    • G10L19/04G10L19/0017
    • Methods for generating a palette of feedback (IIR) filter coefficient sets and using the palette to configure (e.g., adaptively update) a prediction filter which includes a feedback filter, and a system for performing any of the methods. Examples of the system include an encoder, including a prediction filter and configured to encode data indicative of a waveform signal (e.g., samples of an audio signal), and a decoder. In some embodiments, the prediction filter is included in an encoder operable to generate (and assert to a decoder) encoded data including filter coefficient data indicative of the selected IIR coefficient set with which the prediction filter was configured during generation of the encoded data. In some embodiments, the timing with which adaptive updating of prediction filter configuration occurs or is allowed to occur is constrained (e.g., to optimize efficiency of prediction encoding).
    • 用于生成反馈调色板(IIR)滤波器系数组并使用调色板来配置(例如,自适应地更新)包括反馈滤波器的预测滤波器的方法和用于执行任何方法的系统的方法。 系统的示例包括编码器,包括预测滤波器并且被配置为对表示波形信号(例如,音频信号的样本)的数据和解码器进行编码。 在一些实施例中,预测滤波器被包括在可操作以生成(并且向解码器断言)编码数据的编码数据中,所述编码数据包括指示在生成编码数据期间配置了预测滤波器的所选择的IIR系数组的滤波器系数数据。 在一些实施例中,发生或允许发生预测过滤器配置的自适应更新的定时被限制(例如,以优化预测编码的效率)。
    • 4. 发明授权
    • Stereophonic balance control system
    • 立体声平衡控制系统
    • US4503554A
    • 1985-03-05
    • US569498
    • 1984-01-09
    • Mark F. Davis
    • Mark F. Davis
    • H04R1/22H04R1/26H04R1/40H04R3/04H04R3/14H04R5/02H04R5/00
    • H04R3/14H04R1/227H04R1/26H04R1/403H04R3/04H04R5/02
    • The disclosure relates to an audio signal reproduction system having one or more of the following features: (1) a loudspeaker having (a) a flat frequency response and (b) a predetermined power response; (2) two loudspeakers adapted to be positioned relative to one another so that they reproduce a stereophonic image substantially independent of the listener's position along a listening line spaced from the loudspeakers and nonintersecting a line extending between the two speakers; (3) an improved cross-over network having a substantially constant input impedance as a function of frequency; (4) a power sensor for sensing the power applied to a transducer so that audio signals are transmitted over a first signal path through the system when the sensed power is above a predetermined minimum level, and over a second path when the sensed power falls below the minimum level; (5) a power monitoring circuit to prevent a loudspeaker driver from being overdriven; and (6) a circuit for substantially balancing the signal energy levels between two audio channels over a long period of time.
    • 本公开涉及具有以下特征中的一个或多个的音频信号再现系统:(1)具有(a)平坦频率响应和(b)预定功率响应的扬声器; (2)适于相对于彼此定位的两个扬声器,使得它们沿着与扬声器间隔开的聆听线基本上独立于收听者的位置再现立体声图像,并且不间断地在两个扬声器之间延伸的线; (3)具有作为频率的函数的基本上恒定的输入阻抗的改进的交叉网络; (4)功率传感器,用于感测施加到换能器的功率,使得当感测功率高于预定最小电平时,通过系统的第一信号路径传输音频信号,并且当感测功率低于第二路径时,通过第二路径 最低水平; (5)用于防止扬声器驱动器过载的电力监控电路; 以及(6)用于在长时间内基本平衡两个音频通道之间的信号能级的电路。
    • 9. 发明授权
    • Adaptive signal weighting system
    • 自适应信号加权系统
    • US4539526A
    • 1985-09-03
    • US462372
    • 1983-01-31
    • Mark F. Davis
    • Mark F. Davis
    • H04B1/62G11B5/027G11B20/04H03G5/16H03G5/18H03G9/02H04B1/64H03G3/20H03F3/68
    • H03G9/025H03G5/165H03G5/18
    • An adaptive signal weighting system is disclosed for use in transmitting an electrical information signal of a predetermined bandwidth along a signal path. The system can be used to encode or decode the signal. The system comprises filter means disposed in the signal path for varying the gain impressed on the portion of the information signal within a first select spectral region within the preselected bandwidth. The gain is varied in response to and as a function of a first control signal. Means are provided means for generating the first control signal in response to and in accordance with the signal energy of the information signal substantially within at least a part of the first select spectral region. The system also comprises gain control means disposed in the signal path and coupled to the filter means for varying the signal gain impressed on the information signal substantially throughout the predetermined bandwidth, the signal gain varying in response to and as a function of a second control signal; and means for generating the second control signal in response to and as a function of the signal energy of the information signal within at least one other select spectral region of the information signal.
    • 公开了一种用于沿着信号路径发送预定带宽的电信息信号的自适应信号加权系统。 该系统可用于对信号进行编码或解码。 该系统包括设置在信号路径中的滤波器装置,用于改变在预选带宽内的第一选择频谱区域内的信息信号部分上的增益。 响应于第一控制信号并且作为第一控制信号的函数,增益是变化的。 提供装置,用于响应于并且根据信息信号的信号能量,基本上在第一选择光谱区域的至少一部分内产生第一控制信号。 该系统还包括设置在信号路径中并被耦合到滤波器装置的增益控制装置,用于基本上在整个预定带宽内改变施加在信息信号上的信号增益,信号增益响应于第二控制信号而变化 ; 以及用于响应于信息信号的至少一个其他选择光谱区域内的信息信号的信号能量并根据信号信号的函数产生第二控制信号的装置。
    • 10. 发明授权
    • Loudspeaker system
    • 扬声器系统
    • US4503553A
    • 1985-03-05
    • US500972
    • 1983-06-03
    • Mark F. Davis
    • Mark F. Davis
    • H04R3/00H04R1/22H04R1/26H04R1/40H04R3/04H04R3/12H04R3/14H04R5/02
    • H04R1/227H04R1/26H04R1/403H04R3/04H04R3/14H04R5/02
    • The disclosure relates to an audio signal reproduction system having one or more of the following features: (1) a loudspeaker having (a) a flat frequency response and (b) a predetermined power response; (2) two loudspeakers adapted to be positioned relative to one another so that they reproduce a stereophonic image substantially independent of the listener's position along a listening line spaced from the loudspeakers and nonintersecting a line extending between the two speakers; (3) an improved cross-over network having a substantially constant input impedance as a function of frequency; (4) a power sensor for sensing the power applied to a transducer so that audio signals are transmitted over a first signal path through the system when the sensed power is above a predetermined minimum level, and over a second path when the sensed power falls below the minimum level; (5) a power monitoring circuit to prevent a loudspeaker driver from being overdriven; and (6) a circuit for substantially balancing the signal energy levels between two audio channels over a long period of time.
    • 本公开涉及具有以下特征中的一个或多个的音频信号再现系统:(1)具有(a)平坦频率响应和(b)预定功率响应的扬声器; (2)适于相对于彼此定位的两个扬声器,使得它们沿着与扬声器间隔开的聆听线基本上独立于收听者的位置再现立体声图像,并且不间断地在两个扬声器之间延伸的线; (3)具有作为频率的函数的基本上恒定的输入阻抗的改进的交叉网络; (4)功率传感器,用于感测施加到换能器的功率,使得当感测功率高于预定最小电平时,通过系统的第一信号路径传输音频信号,并且当感测功率低于第二路径时,通过第二路径 最低水平; (5)用于防止扬声器驱动器过载的电力监控电路; 以及(6)用于在长时间内基本平衡两个音频通道之间的信号能级的电路。