Methods and apparatuses for encoding/decoding high resolution images
Abstract
A method performed by an apparatus for decoding an image, includes: receiving an encoded bit stream; inverse-quantizing and inverse-transforming the received bit stream to obtain a residue; performing motion compensation on a prediction unit to generate a prediction block; and adding the generated prediction block to the residue to restore the image, wherein a coding unit has a recursive tree structure, and wherein when a planar intra prediction mode is activated, a predicted pixel value of an internal pixel of a current prediction unit is obtained by performing bilinear interpolation using (i) vertically and horizontally directional corresponding internal boundary prediction pixel values in the current prediction unit and (ii) vertically and horizontally directional corresponding pixel values in previously decoded left side block and upper end block of the current prediction unit, and a size of the prediction unit is restricted to no more than 64×64 pixels.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method performed by an apparatus for decoding an image, the method comprising:
receiving an encoded bit stream; inverse-quantizing and inverse-transforming the received bit stream to obtain a residue; performing motion compensation on a prediction unit to generate a prediction block; and adding the generated prediction block to the residue to restore the image, wherein a coding unit has a recursive tree structure, and a size of a minimum coding unit is included in a sequence parameter set, and wherein when a planar intra prediction mode is activated, a predicted pixel value of an internal pixel of a current prediction unit is obtained by performing bilinear interpolation using (i) vertically and horizontally directional corresponding internal boundary prediction pixel values in the current prediction unit and (ii) vertically and horizontally directional corresponding pixel values in previously decoded left side block and upper end block of the current prediction unit, and a size of the prediction unit is restricted to no more than 64×64 pixels.
2 . The method of claim 1 , wherein a partition splitting is achieved by an asymmetric partitioning when the prediction unit is split.
3 . The method of claim 2 , wherein the asymmetric partitioning is conducted along a horizontal direction to split the prediction unit
into a first partition having a size of 64×16 and a second partition having a size of 64×48, or into a first partition having a size of 64×48 and a second partition having a size of 64×16.
4 . The method of claim 2 , wherein the asymmetric partitioning is performed along a vertical direction to split the prediction unit
into a first partition having a size of 16×64 and a second partition having 48×64, or into a first partition having a size of 48×64 and a second partition having a size of 16×64.Join the waitlist — get patent alerts
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