会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • High frequency and low frequency audio signal encoding and decoding system
    • 高频和低频音频信号编解码系统
    • US06772114B1
    • 2004-08-03
    • US09710916
    • 2000-11-13
    • Robert Johannes SluijterAndreas Johannes GerritsRakesh TaoriSamir Chennoukh
    • Robert Johannes SluijterAndreas Johannes GerritsRakesh TaoriSamir Chennoukh
    • G10L1900
    • G10L19/0208
    • In an audio transmission system, an input signal is split up into two spectral portions in a transmitter. These spectral portions are coded by their own respective coder. The low-frequency signal portion is coded by a regular narrow-band coder and the high frequency portion is coded using a coder that outputs LPC codes and signal amplitude codes. In the receiver, the low frequency signal portion is reconstructed by a narrow-band decoder and the high frequency portion is reconstructed by applying a high pass filter to a white noise signal and applying an LPC filter that is controlled by the LPC codes to this filtered white noise signal and adjusting the signal amplitude with an amplifier that is controlled using the amplitude codes of the transmitter. The reconstructed low frequency signal and the reconstructed high frequency signal are then combined to yield a reconstructed output signal containing both frequency ranges.
    • 在音频传输系统中,输入信号在发射机中被分成两个频谱部分。 这些频谱部分由其各自的编码器编码。 低频信号部分由常规窄带编码器编码,并且使用输出LPC码和信号幅度码的编码器对高频部分进行编码。 在接收机中,低频信号部分由窄带解码器重构,高频部分通过对白噪声信号施加高通滤波器并将由LPC码控制的LPC滤波器应用于该滤波器 白噪声信号,并用放大器调节信号幅度,该放大器使用发射机的幅度码进行控制。 然后将重构的低频信号和重建的高频信号组合以产生包含两个频率范围的重构输出信号。
    • 5. 发明授权
    • Wideband signal transmission system
    • 宽带信号传输系统
    • US07174135B2
    • 2007-02-06
    • US10480660
    • 2002-06-20
    • Robert Johannes SluijterAndreas Johannes GerritsSamir Chennoukh
    • Robert Johannes SluijterAndreas Johannes GerritsSamir Chennoukh
    • H04B1/00H04B7/00G10L19/00
    • G10L21/038
    • Described is a transmission system (10) comprising a transmitter (12) for transmitting a narrowband audio signal to a receiver (14) via a transmission channel (16). The receiver (14) comprises a frequency domain bandwidth extender (18) for extending a bandwidth of the received narrowband audio signal by complementing the received narrowband audio signal with a highband extension thereof. The bandwidth extender (18) comprises an amplitude extender (24) for extending the bandwidth of an amplitude spectrum of the received narrowband audio signal by mapping narrowband amplitudes onto highband amplitudes. The bandwidth extender (18) further comprises a phase extender (26) for extending the bandwidth of a phase spectrum of the received narrowband signal and a combiner (28) for combining the extended amplitude spectrum and the extended phase spectrum into a bandwidth extended audio signal. The transmission system (10) is characterized in that the amplitude extender (24) comprises an amplitude mapper (42) and first and second frequency scale transformers (40,44). The first frequency scale transformer. (40) is arranged for transforming a linear frequency scale of the amplitude spectrum into a logarithmic frequency scale, e.g. the Bark scale. The amplitude mapper (42) is arranged for mapping according to the logarithmic frequency scale the narrowband amplitudes onto the highband amplitudes. The second frequency scale transformer (44) is arranged for transforming the logarithmic frequency scale of the extended amplitude spectrum into the linear frequency scale.
    • 描述了一种传输系统(10),包括用于经由传输信道(16)将窄带音频信号发送到接收机(14)的发射机(12)。 接收器(14)包括频域带宽扩展器(18),用于通过用接收的窄带音频信号的高频扩展来补充接收到的窄带音频信号来扩展接收的窄带音频信号的带宽。 带宽扩展器(18)包括幅度扩展器(24),用于通过将窄带幅度映射到高频带幅度上来扩展接收的窄带音频信号的幅度谱带宽。 带宽扩展器(18)还包括扩展器(26),用于扩展所接收的窄带信号的相位频带的带宽;以及组合器(28),用于将扩展幅度频谱和扩展相位频谱组合成带宽扩展音频信号 。 传输系统(10)的特征在于,幅度扩展器(24)包括幅度映射器(42)和第一和第二频率比例变换器(40,44)。 第一台变频器。 (40)被布置用于将幅度谱的线性频率变换变换成对数频率标度,例如。 吠声鳞片。 幅度映射器(42)被布置用于根据对数频率标度将窄带幅度映射到高频带幅度上。 第二频率比例变换器(44)被设置为将扩展振幅频谱的对数频谱变换为线性频率标度。
    • 6. 发明授权
    • Transmission system for transmitting an audio signal
    • 用于发送音频信号的传输系统
    • US06978241B1
    • 2005-12-20
    • US09575609
    • 2000-05-22
    • Robert Johannes SluijterAugustus Josephus Elizabeth Maria Janssen
    • Robert Johannes SluijterAugustus Josephus Elizabeth Maria Janssen
    • G10L19/02G10L25/90G10L21/04
    • G10L19/02G10L2025/906
    • An analyzer determines frequency and amplitudes of an audio signal represented by sinusoids for transmission transmitted to a receiver decoder which includes a synthesizer to reconstruct the audio signal. A pitch detector determines the pitch for transmission to the receiver along with the structure of the spectrum of the speech signal. The structure of the spectrum is often transmitted in the form of LPC parameters. To correct for frequency changes of the periodic component of an audio signal, a frequency change determiner determines a change of the frequency of the periodical component over the analysis period. This change of frequency is transmitted to the decoder for increasing the accuracy of the reconstruction of the audio signal. Further, the frequency change is only used to obtain a more accurate value of the pitch. The frequency change is determined by using a time warper which performs a time transformation such that a time transformed audio signal is obtained with a minimum frequency change.
    • 分析器确定由发送到接收机解码器的传输的正弦波表示的音频信号的频率和幅度,该接收机解码器包括用于重建音频信号的合成器。 音调检测器确定用于传输到接收机的音高以及语音信号的频谱的结构。 频谱的结构通常以LPC参数的形式传输。 为了校正音频信号的周期分量的频率变化,频率变化确定器确定分析周期中周期性分量的频率的变化。 频率的这种变化被传送到解码器,以提高音频信号重建的精度。 此外,频率变化仅用于获得更准确的音调值。 频率变化通过使用执行时间变换的时间整形器来确定,使得以最小的频率变化获得时间变换的音频信号。