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Method and device for eliminating the disturbing influences of the fundamental frequency of the voice and its harmonics in the frequency channels of a speech coder

机译:消除语音编码器频道中语音基频及其谐波的干扰影响的方法和装置

摘要

1,120,706. Vocoder. INTERNATIONAL BUSINESS MACHINES CORP. 15 April, 1966 [26 April, 1965], No. 16552/66. Heading H4R. A channel vocoder which includes a number of band-pass filters to derive signals defining the spectrum of a speech signal has an integrator arranged on the output of each band-pass filter with the integration time of each integrator controlled in accordance with the pitch frequency of the input speech signal. The arrangement eliminates pitch frequency dependence of the various analysis channel outputs. Fig. 2 shows a system in which the speech spectrum is analysed by band-pass filters BP 1 to BP n whose outputs are rectified and integrated in circuits I 1 to I n to provide signals defining the speech spectrum. The integrators are sampled and reset by pulses on line K o , the pulses being derived from the speech pitch pulses during voiced sounds and from a constant repetition rate pulse generator IG during unvoiced sounds, switching being under the control of a voiced-unvoiced discriminator D1. In a vocoder where the excitation function is derived as a pulse train, both during voiced and unvoiced sounds, the pulses being randomly spaced within limits during unvoiced sounds, the excitation function pulses may be used to sample and discharge the integrator both during voiced and unvoiced sounds, Fig. 3 (not shown). Where the spectrum signals are to be transmitted in digital form an arrangement such as is shown in Fig. 5 may be used where the integrator has a threshold discriminator D 1 to D 1 connected to reset the integrator when the integrator output reaches a predetermined value. Each resetting produces a pulse on line e and these pulses are counted by the respective counter BZ 1 to BZ n . Each excitation function pulse is applied to store the counter count and to reset the counter to zero. If the spectrum signals are to be quantized, e.g., to eight levels, the integrator and level discriminator may be arranged so that it produces a maximum of 8 pulses on line e for the maximum signal level during the longest expected excitation function period. By using a three-stage binary counter for each counter BZ 1 to BZ n a binary signal is obtained directly from the state of the binary counters. Excitation function pulses may be derived as shown from the speech signal during both voiced and unvoiced sounds, or the resetting pulses may be derived from an idependent generator during unvoiced sounds as in Fig. 2 (or Fig. 4, not shown). Transistor integrator circuits are described, Figs. 6 and 7 (not shown).
机译:1,120,706。声码器。国际商业机器公司,1966年4月15日[1965年4月26日],第16552/66号。标题H4R。包括多个带通滤波器以导出定义语音信号频谱的信号的信道声码器具有布置在每个带通滤波器的输出上的积分器,每个积分器的积分时间根据扬声器的音调频率来控制。输入语音信号。该布置消除了各种分析通道输出的音调频率依赖性。图2示出了一种系统,其中语音谱由带通滤波器BP 1至BP n分析,该带通滤波器的输出被整流并积分在电路I 1至I n中,以提供限定语音谱的信号。积分器通过在线K o上的脉冲进行采样和重置,这些脉冲是从发声声音期间的语音音调脉冲以及在发声声音期间的恒定重复率脉冲发生器IG派生而来的,在发声声音鉴别器D1的控制下进行切换。在声函数和清声期间都将激励函数导出为脉冲序列的声码器中,在清声期间将脉冲随机地分布在极限范围内,激励函数脉冲可用于在有声和清声期间对积分器进行采样和放电声音,图3(未显示)。在频谱信号将以数字形式发送的情况下,可以使用如图5所示的布置,其中积分器具有阈值鉴别器D 1至D 1,当积分器输出达到预定值时,该阈值鉴别器D 1至D 1被连接以使积分器复位。每次复位都会在线路e上产生一个脉冲,这些脉冲由相应的计数器BZ 1至BZ n计数。施加每个激励功能脉冲以存储计数器计数并将计数器重置为零。如果频谱信号将被量化为例如八个电平,则可以设置积分器和电平鉴别器,使得在最长的预期激励功能周期内,对于最大信号电平,在线e上最多产生8个脉冲。通过对每个计数器BZ 1至BZ n使用三级二进制计数器,直接从二进制计数器的状态获得二进制信号。可以在有声和无声的声音中从语音信号中获得激励功能脉冲,或者如图2(或图4,未示出)从无声的声音中从独立发生器生成复位脉冲。描述了晶体管积分器电路,图1和2。图6和7(未示出)。

著录项

  • 公开/公告号FR1477067A

    专利类型

  • 公开/公告日1967-04-14

    原文格式PDF

  • 申请/专利权人 IBM;INTERNATIONAL BUSINESS MACHINES CORPORATION;

    申请/专利号FR19660058556

  • 发明设计人

    申请日1966-04-22

  • 分类号H04B1/66;

  • 国家 FR

  • 入库时间 2022-08-23 14:01:28

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