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    • 31. 发明申请
    • 16-POINT TRANSFORM FOR MEDIA DATA CODING
    • 用于媒体数据编码的16点变换
    • US20110153699A1
    • 2011-06-23
    • US12820346
    • 2010-06-22
    • Yuriy ReznikRajan L. JoshiMarta Karczewicz
    • Yuriy ReznikRajan L. JoshiMarta Karczewicz
    • G06F17/14
    • G06F17/147H04N19/42H04N19/61H04N19/625
    • In general, techniques are described for implementing a 16-point inverse discrete cosine transform (IDCT) that is capable of applying multiple IDCTs of different sizes. For example, an apparatus comprising a 16-point inverse discrete cosine transform of type II (IDCT-II) unit may implement the techniques of this disclosure. The 16-point IDCT-II unit performs these IDCTs-II of different sizes to transform data from a spatial to a frequency domain. The 16-point IDCT-II unit includes an 8-point IDCT-II unit that performs one of the IDCTs-II of size 8 and a first 4-point IDCT-II unit that performs one of the IDCTs-II of size 4. The 8-point IDCT-II unit includes the first 4-point DCT-II unit. The 16-point IDCT-II unit also comprises an inverse 8-point DCT-IV unit that includes a second 4-point IDCT-II unit and a third 4-point IDCT-II unit. Each of the second and third 4-point IDCT-II units performs one of the IDCTs-II of size 4.
    • 一般来说,描述了实现能够应用不同大小的多个IDCT的16点离散余弦变换(IDCT)的技术。 例如,包括II型(IDCT-II)单元的16点逆离散余弦变换的装置可以实现本公开的技术。 16点IDCT-II单元执行不同尺寸的这些IDCT-II以将数据从空间变换到频域。 16点IDCT-II单元包括执行尺寸为8的IDCT-II之一的8点IDCT-II单元和执行尺寸为4的IDCT-II之一的第一个4点IDCT-II单元。 8点IDCT-II单元包括第一个4点DCT-II单元。 16点IDCT-II单元还包括具有第二4点IDCT-II单元和第三个4点IDCT-II单元的逆8点DCT-IV单元。 第二和第三4点IDCT-II单元中的每一个执行大小为4的IDCT-II之一。
    • 32. 发明申请
    • 16-POINT TRANSFORM FOR MEDIA DATA CODING
    • 用于媒体数据编码的16点变换
    • US20110150079A1
    • 2011-06-23
    • US12820357
    • 2010-06-22
    • Yuriy ReznikRajan L. JoshiMarta Karczewicz
    • Yuriy ReznikRajan L. JoshiMarta Karczewicz
    • H04N7/30
    • G06F17/147H04N19/122H04N19/176H04N19/42H04N19/61H04N19/625
    • In general, techniques are described for implementing a 16-point discrete cosine transform (DCT) that is capable of applying multiple IDCT of different sizes. For example, an apparatus comprising a 16-point discrete cosine transform of type II (DCT-II) unit may implement the techniques of this disclosure. The 16-point DCT-II unit performs these DCTs-II of different sizes to transform data from a spatial to a frequency domain. The 16-point DCT-II unit includes an 8-point DCT-II unit that performs one of the DCTs-II of size 8 and a first 4-point DCT-II unit that performs one of the DCTs-II of size 4. The 8-point DCT-II unit includes the first 4-point DCT-II unit. The 16-point DCT-II unit also comprises an 8-point DCT-IV unit that includes a second 4-point DCT-II unit and a third 4-point DCT-II unit. Each of the second and third 4-point DCT-II units performs one of the DCTs-II of size 4.
    • 通常,描述了用于实现能够应用不同大小的多个IDCT的16点离散余弦变换(DCT)的技术。 例如,包括II型(DCT-II)单元的16点离散余弦变换的装置可以实现本公开的技术。 16点DCT-II单元执行不同尺寸的DCT-II以将数据从空间变换到频域。 16点DCT-II单元包括执行尺寸为8的DCT-II之一的8点DCT-II单元和执行尺寸为4的DCT-II之一的第一个4点DCT-II单元。 8点DCT-II单元包括第一个4点DCT-II单元。 16点DCT-II单元还包括8点DCT-IV单元,其包括第二个4点DCT-II单元和第三个4点DCT-II单元。 第二和第三4点DCT-II单元中的每一个执行大小为4的DCT-II之一。
    • 38. 发明授权
    • Assembling multiview video coding sub-BITSTREAMS in MPEG-2 systems
    • 在MPEG-2系统中组装多视点视频编码子BITSTREAMS
    • US08780999B2
    • 2014-07-15
    • US12709323
    • 2010-02-19
    • Ying ChenMarta KarczewiczPeisong Chen
    • Ying ChenMarta KarczewiczPeisong Chen
    • H04N7/12
    • H04N21/8451H04N19/30H04N19/46H04N19/597H04N19/61H04N19/70H04N21/21805H04N21/234327H04N21/2362H04N21/2365H04N21/4345H04N21/4347
    • A demultiplexer may assemble view components of sub-bitstreams. In one example, an apparatus comprises a demultiplexer that produces a multiview video coding (MVC) standard compliant bitstream from a received bitstream comprising a primary sub-bitstream and an embedded sub-bitstream. To produce the MVC standard compliant bitstream, the demultiplexer determines whether a view component of the primary sub-bitstream has a view order index that is greater than a view order index of a view component of the embedded sub-bitstream, and to add the view component from the sub-bitstream for which the view order index is lower to the produced bitstream. The received bitstream may comprise delimiter network abstraction layer (NAL) units between each view component to differentiate the view components. The apparatus may further comprise a video decoder to decode the bitstream produced by the demultiplexer.
    • 解复用器可以组合子比特流的视图分量。 在一个示例中,设备包括解复用器,其从包含主子比特流和嵌入子比特流的接收比特流中产生多视图视频编码(MVC)标准兼容比特流。 为了产生符合MVC标准的比特流,解复用器确定主子比特流的视图分量是否具有大于嵌入子比特流的视图分量的视图订单索引的视图订单索引,并且添加视图 来自视频顺序索引低于所生成的比特流的子比特流的分量。 所接收的比特流可以包括在每个视图组件之间的定界符网络抽象层(NAL)单元,以区分视图组件。 该装置还可以包括视频解码器,以解码由解复用器产生的比特流。
    • 40. 发明授权
    • Video coding with large macroblocks
    • 具有大宏块的视频编码
    • US08634456B2
    • 2014-01-21
    • US12562412
    • 2009-09-18
    • Peisong ChenYan YeMarta Karczewicz
    • Peisong ChenYan YeMarta Karczewicz
    • H04N7/12H04N11/02
    • H04N19/103H04N19/147H04N19/176H04N19/46H04N19/61H04N19/70
    • Techniques are described for encoding and decoding digital video data using macroblocks that are larger than the macroblocks prescribed by conventional video encoding and decoding standards. For example, the techniques include encoding and decoding a video stream using macroblocks comprising greater than 16×16 pixels, for example, 64×64 pixels. In one example, an apparatus includes a video encoder configured to encode a video block having a size of more than 16×16 pixels, generate block-type syntax information that indicates the size of the block, and generate a coded block pattern value for the encoded block, wherein the coded block pattern value indicates whether the encoded block includes at least one non-zero coefficient. The encoder may set the coded block pattern value to zero when the encoded block does not include at least one non-zero coefficient or set the coded block pattern value to one when the encoded block includes a non-zero coefficient.
    • 描述了使用比常规视频编码和解码标准规定的宏块大的宏块对数字视频数据进行编码和解码的技术。 例如,这些技术包括使用包括大于16×16像素(例如,64×64像素)的宏块对视频流进行编码和解码。 在一个示例中,一种装置包括视频编码器,被配置为对具有大于16×16像素的大小的视频块进行编码,生成指示块大小的块类型语法信息,并生成用于 编码块,其中编码块模式值指示编码块是否包括至少一个非零系数。 当编码块不包括至少一个非零系数时,编码器可以将编码块模式值设置为零,或者当编码块包括非零系数时将编码块模式值设置为1。