IP Library Granted Patent US 6,862,319
Granted Patent B2
US 6,862,319 · App. 10/389,890 · Granted Mar 1, 2005

Moving-picture coding and decoding method and apparatus with reduced computational cost

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Quick Facts
Patent No.
US 6,862,319
App. No.
10/389,890
Granted
Mar 1, 2005
Kind
B2
Abstract

A coded moving-picture signal is decoded by a resolution-converting motion compensation process and a resolution-converting inverse discrete cosine transform, both of which decrease the resolution of the picture, thereby reducing the amount of reference picture data that has to be stored and accessed. The reference picture data may also be stored in a compressed form. The resolution conversion and compression processes may also be used in the coding of the moving-picture signal. The resolution-converting inverse discrete cosine transform may be performed by output of intermediate results that have not been combined by addition and subtraction in a butterfly computation.

Claims (30)

1. A moving-picture coder receiving a moving-picture signal as an input signal, comprising:

a resolution-converting motion estimator comparing said moving-picture signal with a reference picture signal having reduced resolution, selecting one of predictive coding and intra-frame coding, and generating full-resolution motion vectors if said predictive coding is selected;

a resolution-converting motion compensator coupled to said resolution-converting motion estimator, applying said full-resolution motion vectors to said reference picture signal and performing resolution conversion, thereby generating a first picture signal having full resolution and a second picture signal having said reduced resolution, when said predictive coding is selected;

a subtractor coupled to said resolution-converting motion compensator, generating a third picture signal by subtracting said first picture signal from said input signal when said predictive coding is selected, said third picture signal being identical to said input signal when said intra-frame coding is selected;

a DCT processor coupled to said subtractor, carrying out a discrete cosine transform on said third picture signal, thereby obtaining a transformed picture signal;

a resolution-converting IDCT processor coupled to said DCT processor, carrying out an inverse discrete cosine transform and resolution conversion on said transformed picture signal, thereby obtaining a fourth picture signal having said reduced resolution;

an adder coupled to said resolution-converting IDCT processor, adding said second picture signal and said fourth picture signal, thereby obtaining said reference picture signal; and

a memory coupled to said adder, storing said reference picture signal.

2. The moving-picture coder of claim 1 , further comprising:

a quantizer coupled to said DCT processor, quantizing said transformed picture signal to obtain a quantized signal;

a variable-length coder coupled to said quantizer, performing variable-length code on said quantized signal; and

an inverse quantizer coupled to said quantizer, dequantizing said quantized signal for input to said resolution-converting IDCT processor.

3. The moving-picture coder of claim 1 , further comprising:

a data compressor coupled to said adder, compressively coding said reference picture signal for storage in said memory; and

a data compressor coupled to said memory, expanding the compressed reference picture signal stored in said memory.

4. A method of coding an input signal representing a moving picture, comprising the steps of:

(a) comparing said moving-picture signal with a reference picture signal having reduced resolution, selecting one of predictive coding and intra-frame coding, and generating full-resolution motion vectors if said predictive coding is selected;

(b) applying said full-resolution motion vectors to said reference picture signal and performing resolution conversion, thereby generating a first picture signal having full resolution and a second picture signal having said reduced resolution, when said predictive coding is selected;

(c) generating a third picture signal by subtracting said first picture signal from said input signal when said predictive coding is selected, said third picture signal being identical to said input signal when said intra-frame coding is selected;

(d) carrying out a discrete cosine transform on said third picture signal, thereby obtaining a transformed picture signal;

(e) carrying out an inverse discrete cosine transform and resolution conversion on said transformed picture signal, thereby obtaining a fourth picture signal having said reduced resolution;

(f) adding said second picture and said fourth picture signal, thereby obtaining said reference picture signal; and

(g) storing said reference picture signal in a memory.

5. The method of claim 4 , further comprising the steps of:

(h) quantizing said transformed picture signal to obtain a quantized signal;

(i) performing variable-length coding on said quantized signal; and

(j) dequantizing said quantized signal for input to a resolution-converting IDCT processor.

6. The method of claim 4 , further comprising the steps of:

(k) compressively coding said reference picture signal before said step (g); and

(l) expanding the compressed reference picture signal after said step (g).

Assignments (5)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE PATENT NUMBERS 10342096;10671117; 10716375; 10716376;10795407;10795408; AND 10827591 PREVIOUSLY RECORDED AT REEL: 58314 FRAME: 657. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 29, 2024
From: RAKUTEN, INC.
To: RAKUTEN GROUP, INC.
Reel/Frame 068066/0103 →
CHANGE OF NAME Recorded Dec 6, 2021
From: RAKUTEN, INC.
To: RAKUTEN GROUP, INC.
Reel/Frame 058314/0657 →
CHANGE OF ADDRESS Recorded Dec 17, 2015
From: RAKUTEN, INC.
To: RAKUTEN, INC.
Reel/Frame 037751/0006 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2013
From: GLOBAL D, LLC.
To: RAKUTEN, INC.
Reel/Frame 031119/0044 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2013
From: OKI ELECTRIC INDUSTRY CO., LTD.
To: GLOBAL D, LLC.
Reel/Frame 031103/0649 →