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    • 2. 发明授权
    • Symbiotic automatic speech recognition and vocoder
    • 共生自动语音识别和声码器
    • US6092039A
    • 2000-07-18
    • US960535
    • 1997-10-31
    • Arthur Richard Zingher
    • Arthur Richard Zingher
    • G10L15/02G10L19/00G10L19/02
    • G10L15/02G10L19/00
    • The device and method of the invention receives a digital speech signal, which is processed by an Acoustic Processor to produce a Mel-Cepstrum Vector and Pitch. This is recalibrated and encoded. The encoded signal is transmitted over a narrow-band Channel, then decoded, split and recalibrated. From the split signals, one signal feeds a Statistical Processor which produces Recognized Text. Another signal feeds a Regenerator, which produces Regenerated Speech. The device and method according to the invention achieve simultaneously very perceptive Automatic Speech Recognition and high quality VoCoding, using Speech communicated or stored via a Channel with narrow-bandwidth; very perceptive Automatic Speech Recognition on a Client & Server system without a need to store or to communicate wide-bandwidth Speech signals; very perceptive Automatic Speech Recognition with Deferred Review and Editing without storage of wide-bandwidth Speech signals; better feedback in a system for Automatic Speech Recognition particularly for Deferred Automatic Speech Recognition; and good usability for unified Automatic Speech Recognition and VoCoding.
    • 本发明的装置和方法接收数字语音信号,该数字语音信号由声学处理器处理以产生梅尔倒谱矢量和音调。 这被重新校准和编码。 编码信号通过窄带信道传输,然后进行解码,分割和重新校准。 从分割信号中,一个信号馈送产生识别文本的统计处理器。 另一个信号供给一个再生器,它产生再生语音。 根据本发明的装置和方法同时实现非常感知的自动语音识别和高质量的VoCoding,使用通过具有窄带宽的信道传送或存储的语音; 非常感知的自动语音识别在客户端和服务器系统上,无需存储或通信宽带宽语音信号; 非常感知的自动语音识别与延迟检查和编辑,无需存储宽带语音信号; 自动语音识别系统中更好的反馈,特别是延迟自动语音识别; 以及统一的自动语音识别和VoCoding的良好可用性。