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    • 91. 发明申请
    • HARMONIC QUANTIZER SCALE
    • 谐波量规
    • US20070258519A1
    • 2007-11-08
    • US11676263
    • 2007-02-16
    • Sridhar Srinivasan
    • Sridhar Srinivasan
    • H04N11/02
    • H04N19/124H04N19/126H04N19/136H04N19/176H04N19/46H04N19/61
    • A digital media encoder/decoder performs quantization/dequantization based on quantization parameters taken from a harmonic quantizer scale. The harmonic quantizer scale can include a normal portion consisting of quantization parameter values harmonically-related as simple fractions of each other, and a denormal portion of quantizers having a linear or other relation. The encoder/decoder further supports a scaled quantizer mode where quantization is performed based on the quantization parameter as scaled by a fractional value. A compressed domain contrast adjustment is effected by adjusting the quantization parameters in the compressed bitstream, without having to adjust and recode the digital media data in the compressed bitstream.
    • 数字媒体编码器/解码器基于从谐波量化器尺度获得的量化参数来执行量化/去量化。 谐波量化器标度可以包括由作为彼此的简单分数彼此谐波相关的量化参数值组成的正常部分,以及具有线性或其他关系的量化器的非正常部分。 编码器/解码器还支持缩放的量化器模式,其中基于由分数值缩放的量化参数来执行量化。 通过调整压缩比特流中的量化参数来实现压缩域对比度调整,而不必对压缩比特流中的数字媒体数据进行调整和重新编码。
    • 94. 发明申请
    • Reversible transform for lossy and lossless 2-D data compression
    • 用于有损和无损2-D数据压缩的可逆变换
    • US20060133683A1
    • 2006-06-22
    • US11015707
    • 2004-12-17
    • Sridhar Srinivasan
    • Sridhar Srinivasan
    • G06K9/36
    • G06F17/147H04N19/60H04N19/635
    • A 2D transform and its inverse have an implementation as a sequence of lifting steps arranged for reduced computational complexity (i.e., reducing a number of non-trivial operations). This transform pair has energy compaction properties similar to the discrete cosine transform (DCT), and is also lossless and scale-free. As compared to a separable DCT transform implemented as 1D DCT transforms applied separably to rows and columns of a 2D data block, the transforms operations are re-arranged into a cascade of elementary transforms, including the 2×2 Hadamard transform, and 2×2 transforms incorporating lifting rotations. These elementary transforms have implementations as a sequence of lifting operations.
    • 2D变换及其逆具有作为递减步骤的序列的实现,其被布置为降低计算复杂度(即,减少非平凡操作的数量)。 该变换对具有类似于离散余弦变换(DCT)的能量压缩特性,并且也是无损和无尺度的。 与可分离DCT变换(可分离地应用于2D数据块的行和列)进行DCT DCT变换相比,变换操作被重新排列成级联的基本变换,包括2x2 Hadamard变换,以及包含提升旋转的2x2变换 。 这些基本变换具有作为提升操作的顺序的实现。
    • 96. 发明授权
    • Harmonic quantizer scale
    • 谐波量化器
    • US08588298B2
    • 2013-11-19
    • US13468643
    • 2012-05-10
    • Sridhar Srinivasan
    • Sridhar Srinivasan
    • H04L29/06
    • H04N19/124H04N19/126H04N19/136H04N19/176H04N19/46H04N19/61
    • A digital media encoder/decoder performs quantization/dequantization based on quantization parameters taken from a harmonic quantizer scale. The harmonic quantizer scale can include a normal portion consisting of quantization parameter values harmonically-related as simple fractions of each other, and a denormal portion of quantizers having a linear or other relation. The encoder/decoder further supports a scaled quantizer mode where quantization is performed based on the quantization parameter as scaled by a fractional value. A compressed domain contrast adjustment is effected by adjusting the quantization parameters in the compressed bitstream, without having to adjust and recode the digital media data in the compressed bitstream.
    • 数字媒体编码器/解码器基于从谐波量化器尺度获得的量化参数来执行量化/去量化。 谐波量化器标度可以包括由作为彼此的简单分数彼此谐波相关的量化参数值组成的正常部分,以及具有线性或其他关系的量化器的非正常部分。 编码器/解码器还支持缩放的量化器模式,其中基于由分数值缩放的量化参数来执行量化。 通过调整压缩比特流中的量化参数来实现压缩域对比度调整,而不必对压缩比特流中的数字媒体数据进行调整和重新编码。
    • 100. 发明授权
    • SIMD lapped transform-based digital media encoding/decoding
    • SIMD基于变换的数字媒体编码/解码
    • US08036274B2
    • 2011-10-11
    • US11203644
    • 2005-08-12
    • Sridhar SrinivasanChengjie TuParker Shaw
    • Sridhar SrinivasanChengjie TuParker Shaw
    • H04N7/12H04N11/02H04N11/04
    • H04N19/436G06F17/147H04N19/42H04N19/63
    • A block transform-based digital media codec achieves faster performance by re-mapping components of the digital media data into vectors or parallel units on which many operations of the transforms can be performed on a parallel or single-instruction, multiple data (SIMD) basis. In the case of a one-dimensional lapped biorthogonal transform, the digital media data components are re-mapped into vectors on which butterfly stages of both overlap pre-/post-filter and block transform portions of the lapped transform can be performed on a SIMD basis. In the case of a two-dimensional lapped biorthogonal transform, the digital media data components are re-mapped into vectors on which a Hadamard operator of both overlap pre-/post-filter and block transform can be performed on a SIMD basis.
    • 基于块变换的数字媒体编解码器通过将数字媒体数据的组件重新映射成矢量或并行单元来实现更快的性能,其中可以在并行或单指令多数据(SIMD)基础上执行许多变换操作 。 在一维重叠双正交变换的情况下,将数字媒体数据分量重新映射成向量,其中可以在SIMD上执行翻转变换的重叠前/后滤波和块变换部分的蝶形阶段 基础。 在二维重叠双正交变换的情况下,将数字媒体数据分量重新映射到可以基于SIMD的基础上执行两者重叠前/后滤波和块变换的Hadamard算子的向量。