Invention Grant
- Patent Title: Scalable video encoding method and decoding method, apparatuses therefor, programs therefor, and storage media which store the programs
- Patent Title (中): 可扩展视频编码方法和解码方法,其设备,程序和存储程序的存储介质
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Application No.: US12665884Application Date: 2008-07-01
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Publication No.: US09386322B2Publication Date: 2016-07-05
- Inventor: Kazuya Hayase , Yukihiro Bandoh , Seishi Takamura , Kazuto Kamikura , Yoshiyuki Yashima
- Applicant: Kazuya Hayase , Yukihiro Bandoh , Seishi Takamura , Kazuto Kamikura , Yoshiyuki Yashima
- Applicant Address: JP Tokyo
- Assignee: Nippon Telegraph and Telephone Corporation
- Current Assignee: Nippon Telegraph and Telephone Corporation
- Current Assignee Address: JP Tokyo
- Agency: Harness, Dickey & Pierce, P.L.C.
- Priority: JP2007-174161 20070702
- International Application: PCT/JP2008/061926 WO 20080701
- International Announcement: WO2009/005071 WO 20090108
- Main IPC: H04N19/30
- IPC: H04N19/30 ; H04N19/137 ; H04N19/59 ; H04N19/80

Abstract:
A scalable video encoding method of performing encoding by predicting an upper-layer signal having a relatively high spatial resolution by means of interpolation using an immediately-lower-layer signal having a relatively low spatial resolution. The method computes a first weighting coefficient for each image area of a predetermined unit size in a search for estimating a motion between an encoding target image area in an upper layer and a reference image area, where the first weighting coefficient is computed based on a brightness variation between an image area, which belongs to an immediately-lower layer and has the same spatial position as the encoding target image area, and the reference image area; and performs a motion estimation using a signal which is obtained by correcting a decoded signal of the reference image area by the first weighting coefficient and functions as an estimated signal in the motion estimation, so as to compute a motion vector. Then the method computes a second weighting coefficient based on a brightness variation between a reference image area indicated by the motion vector and the image area which belongs to the immediately-lower layer and has the same spatial position as the encoding target image area; and determines a signal, which is obtained by correcting a decoded signal of the reference image area by using the second weighting coefficient, to be a compensated signal in motion compensation, which functions as a predicted signal of the encoding target image area.
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