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
    • 22. 发明专利
    • Variable rate speech coding
    • 可变速率语音编码
    • JP2011123506A
    • 2011-06-23
    • JP2011002269
    • 2011-01-07
    • Qualcomm Incクゥアルコム・インコーポレイテッドQualcomm Incorporated
    • MANJUNATH SHARATHGARDNER WILLIAM
    • G10L19/14G10L11/02G10L11/04G10L11/06G10L19/04G10L19/06G10L19/08H03M7/30
    • G10L19/24G10L19/20G10L2025/783G10L2025/935
    • PROBLEM TO BE SOLVED: To attain a low bit rate in a method and apparatus for variable rate coding of a speech signal. SOLUTION: An input speech signal is classified and an appropriate coding mode is selected based on this classification. For each classification, the coding mode that achieves the lowest bit rate with an acceptable quality of speech reproduction is selected. Low average bit rates are achieved by only employing high fidelity modes during portions of the speech where this fidelity is required for acceptable output. Lower bit rate modes are used during portions of speech where these modes produce acceptable output. The input speech signal is classified into active and inactive regions. Various coding modes are applied to active speech, depending upon the required level of fidelity. Coding modes may be utilized according to the strengths and weaknesses of each particular mode. The apparatus dynamically switches between these modes as the properties of the speech signal vary with time. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了在语音信号的可变速率编码的方法和装置中获得低比特率。

      解决方案:输入语音信号被分类,并且基于该分类选择适当的编码模式。 对于每个分类,选择实现具有可接受的语音再现质量的最低比特率的编码模式。 低平均比特率通过在语音的部分期间仅采用高保真模式来实现,其中该可靠输出需要该保真度。 在这些模式产生可接受输出的语音部分期间使用较低比特率模式。 输入语音信号分为主动和非活动区域。 取决于所需的保真级别,各种编码模式被应用于活动语音。 可以根据每个特定模式的优点和缺点来利用编码模式。 当语音信号的属性随时间变化时,该装置动态地在这些模式之间切换。 版权所有(C)2011,JPO&INPIT

    • 23. 发明专利
    • Variable rate speech coding
    • 可变速率语音编码
    • JP2013178545A
    • 2013-09-09
    • JP2013087419
    • 2013-04-18
    • Qualcomm Incクゥアルコム・インコーポレイテッドQualcomm Incorporated
    • MANJUNATH SHARATHGARDNER WILLIAM
    • G10L19/22G10L11/02G10L11/04G10L11/06G10L19/04G10L19/12G10L19/14G10L19/24G10L25/78G10L25/90G10L25/93H03M3/04H03M7/30
    • G10L19/24G10L19/20G10L2025/783G10L2025/935
    • PROBLEM TO BE SOLVED: To perform variable bit rate coding of speech signals.SOLUTION: An input speech signal is classified and a coding mode for achieving the lowest bit rate with allowable speech reproduction quality is selected on the basis of the classification. Low average bit rates are achieved by only employing a high fidelity mode (that is, a high bit rate widely applicable to different types of speech) during a period of portions of the speech where it is required for acceptable output. The input speech signal is classified into active and inactive regions. The active region is further classified into a voiced region, an unvoiced region, and a transient region. Various coding modes are applied according to the required level of fidelity. The modes are dynamically switched among the modes as properties of speech signals vary with time. And where appropriate, regions of the speech are modeled as pseudo random noise, resulting in a significantly low bit rate.
    • 要解决的问题:执行语音信号的可变比特率编码。解码:输入语音信号被分类,并且基于分类来选择用于实现具有允许语音再现质量的最低比特率的编码模式。 在需要可接受的输出的语音部分的期间,通过仅采用高保真模式(即广泛适用于不同类型的语音的高比特率)来实现低平均比特率。 输入语音信号分为主动和非活动区域。 有源区进一步分为有声区,无声区和瞬态区。 根据所需的保真级别应用各种编码模式。 这些模式在模式之间动态切换,因为语音信号的属性随时间而变化。 并且在适当的地方,语音区域被建模为伪随机噪声,导致显着低的比特率。
    • 24. 发明专利
    • Video coding with fine granularity scalability using cycle-aligned fragments
    • 使用周期对齐的片段,具有精细粒度可扩展性的视频编码
    • JP2013081226A
    • 2013-05-02
    • JP2012268191
    • 2012-12-07
    • Qualcomm Incクゥアルコム・インコーポレイテッドQualcomm Incorporated
    • YLLIAN BAOMALAYATH NARENDRANATHMANJUNATH SHARATHYE YAN
    • H04N7/26
    • H04N19/34
    • PROBLEM TO BE SOLVED: To use cycle-aligned fragments (CAFs) to facilitate access to encoded FGS video data.SOLUTION: An embodiment performs cycle-based coding of FGS video data block coefficients and syntax elements, and encapsulates cycles in fragments for transmission. The fragments may be cycle-aligned such that a start of a payload of each of the fragments substantially coincides with a start of one of the cycles. In this manner, coding cycles can be readily accessed via individual fragments. The CAFs may be entropy-coded independently of one another so that each fragment may be readily accessed and decoded without waiting for decoding of other fragments. Independent entropy coding permits parallel decoding and simultaneous processing of fragments.
    • 要解决的问题:使用循环对齐的片段(CAF)以便于访问编码的FGS视频数据。 解决方案:一个实施例执行FGS视频数据块系数和语法元素的基于周期的编码,并且将循环封装成用于传输的片段。 片段可以是循环对齐的,使得每个片段的有效载荷的开始基本上与循环中的一个的开始重合。 以这种方式,编码周期可以通过各个片段容易地访问。 CAF可以彼此独立地进行熵编码,使得每个片段可以容易地被访问和解码,而不等待其他片段的解码。 独立熵编码允许并行解码和片段的同时处理。 版权所有(C)2013,JPO&INPIT
    • 30. 发明专利
    • DE60037286T2
    • 2008-10-09
    • DE60037286
    • 2000-07-18
    • QUALCOMM INC
    • MANJUNATH SHARATH
    • G10L19/02G10L19/08G10L11/00G10L19/04H03M7/30
    • A method and apparatus for encoding a prototype waveform is disclosed comprising performing (614) a cross-correlation between a phase spectra of the prototype waveform and a phase spectra of a reference prototype waveform; generating (614) representatives for the maximum values of the cross-correlation; and quantizing (612, 616) an amplitude vector of the prototype waveform and the representatives; whereupon the amplitude vector and the representatives are transmitted as the encoded form of the prototype waveform. Also disclosed is a method and apparatus for reconstructing a prototype waveform, comprising generating (716) linear phase shift values from received phase parameters; composing (714) a modified phase vector from reference phases and the linear phase shift values; and generating (708, 704) a reconstructed current prototype from the modified phase vector and received amplitude parameters.