US2010202523A1PendingUtilityA1

Video encoding/decoding method and apparatus

Assignee: CHUJOH TAKESHIPriority: Apr 18, 2002Filed: Apr 20, 2010Published: Aug 12, 2010
Est. expiryApr 18, 2022(expired)· nominal 20-yr term from priority
H04N 19/46H04N 19/139H04N 19/105H04N 19/107H04N 19/573H04N 19/51H04N 19/126H04N 19/61H04N 19/176H04N 19/103H04N 19/70H04N 19/423H04N 19/174
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Claims

Abstract

A video encoding method comprises selecting one combination, for each block of an input video signal, from a plurality of combinations each including a predictive parameter and at least one reference picture number determined in advance for the reference picture, generating a prediction picture signal in accordance with the reference picture number and predictive parameter of the selected combination, generating a predictive error signal representing an error between the input video signal and the prediction picture signal, and encoding the predictive error signal, information of the motion vector, and index information indicating the selected combination.

Claims

exact text as granted — not AI-modified
1 . A video decoding method for decoding encoded data obtained by subjecting a video image having luminance and two color differences to prediction encoding to the video image, comprising:
 receiving an input of encoded data obtained by encoding, for one or more to-be-decoded blocks, a plurality of combinations comprising (1) a weighting factor for every luminance and two color differences, (2) an offset for every luminance and two color differences, and (3) a flag indicating presence or non-presence of the weighting factor and the offset concerning two color differences, and encoding, for a to-be-decoded block, (A) a quantized orthogonal transform coefficient of a prediction error signal concerning luminance and two color differences and (B) an index indicating (a) one combination of the plurality of combinations and (b) a reference image;   deriving the weighting factor and the offset from the plurality of combinations and the index;   generating a prediction image by multiplying the reference image by the weighting factor and adding the offset;   generating a prediction error signal by subjecting the quantized orthogonal transform coefficient to inverse quantization and inverse orthogonal transform; and   generating a decoded image by calculating a sum of the prediction error signal and the prediction image.   wherein two values of indexes corresponding to different reference images indicate an identical combination of the weighting factor and the offset, and a value obtained by arithmetic-shifting right one of the two values by one bit is identical to a value obtained by arithmetic-shifting right the other value by one bit.   
     
     
         2 . A video decoding apparatus of decoding encoded data obtained by subjecting a video image having luminance and two color differences to prediction encoding to the video image, comprising:
 a receiver configured to receive an input of encoded data obtained by encoding, for one or more to-be-decoded blocks, a plurality of combinations comprising (1) a weighting factor for every luminance and two color differences, (2) an offset for every luminance and two color differences, and (3) a flag indicating presence or non-presence of the weighting factor and the offset concerning two color differences, and encoding, for a to-be-decoded block, (A) a quantized orthogonal transform coefficient of a prediction error signal concerning luminance and two color differences and (B) an index indicating (a) one combination of the plurality of combinations and (b) a reference image;   a deriving module configured to derive the weighting factor and the offset from the plurality of combinations and the index;   a first generator configured to generate a prediction image by multiplying the reference image by the weighting factor and adding the offset;   a second generator configured to generate a prediction error signal by subjecting the quantized orthogonal transform coefficient to inverse quantization and inverse orthogonal transform; and   a third generator configured to generate a decoded image by calculating a sum of the prediction error signal and the prediction image.   wherein two values of indexes corresponding to different reference images indicate an identical combination of the weighting factor and the offset, and a value obtained by arithmetic-shifting right one of the two values by one bit is identical to a value obtained by arithmetic-shifting right the other value by one bit.

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