Page 298 - Video Coding for Mobile Communications Efficiency, Complexity, and Resilience
P. 298

Bibliography	                                                 275


            [115]	 M.  Ghanbari,  S.  de  Faria,  I.  N.  Goh,  and  K.  T.  Tan.  Motion
                  compensation  for  very  low-bit-rate  video.  Signal  Processing:  Image
                  Communication, 7:567–580, 1995.
            [116]	 A.  Sharaf  and  F.  Marvasti.  Motion  compensation  using  spatial
                  transformations  with  forward  mapping.  Signal  Processing:  Image
                  Communication, 14:209–227, 1999.
            [117]	 F.  J.  P.  Lopes  and  M.  Ghanbari.  Analysis  of  spatial  transform
                  motion  estimation  with  overlapped  compensation  and  fractional-pixel
                  accuracy.  IEE  Proceedings  on  Vision,  Image  and  Signal  Processing,
                  146(6):339–344, December 1999.
            [118]	 C.  A.  Papadopoulos  and  T.  G.  Clarkson.  Motion  compensation  using
                  second-order  geometric  transformations.  IEEE  Transactions  on  Cir-
                  cuits and Systems for Video Technology, 5(4):319–331, August 1995.
            [119]	 V.  Seferidis  and  M.  Ghanbari.  General  approach  to  block-matching
                  motion estimation. Optical  Engineering, 32(7):1464 –1474, July 1993.
            [120]	 V.  Seferidis  and  M.  Ghanbari.  Generalised  block-matching  motion
                  estimation  using  quad-tree  structured  spatial  decomposition.  IEE
                  Proceedings  on  Vision,  Image  and  Signal  Processing,  141(6):446–
                  452, December 1994.
            [121]	 Y.  Wang  and  O.  Lee.  Active  mesh—a  feature  seeking  and  tracking
                  image  sequence  representation  scheme.  IEEE  Transactions  on  Image
                  Processing, 3(5):610–624, September 1994.
            [122]	 Y.  Wang  and  O.  Lee.  Use  of  two-dimensional  deformable  mesh
                  structures for video coding. Part I—the synthesis problem: Mesh-based
                  function  approximation  and  mapping.  IEEE  Transactions  on  Circuits
                  and Systems for  Video  Technology, 6(6):637– 646, December 1996.
            [123]	 Y.  Wang,  O.  Lee,  and  A.  Vetro.  Use  of  two-dimensional  deformable
                  mesh  structures  for  video  coding.  Part  II—the  analysis  problem
                  and  a  region-based  coder  employing  an  active  mesh  representation.
                  IEEE  Transactions  on  Circuits  and  Systems  for  Video  Technology,
                  6(6):647– 659, December 1996.
            [124]	 M. Dudon, O. Avaro, and C. Roux. Triangular active mesh for motion
                  estimation. Signal Processing: Image Communication, 10:21– 41, 1997.
            [125]	 Y. Altunbasak and A. M. Tekalp. Closed-form connectivity-preserving
                  solutions  for  motion  compensation  using  2-D  meshes.  IEEE
                  Transactions on Image Processing, 6(9):1255 –1269, September 1997.
            [126]	 Y. Wang and J. Osterman. Evaluation of mesh-based motion estimation
                  in H.263-like coders. IEEE Transactions on Circuits and Systems for
                  Video Technology, 8(3):243–252, June 1998.
            [127]  A. M. Tekalp, P. V. Beek, C. Toklu, and B. G> unsel. Two-dimensional
                  mesh-based visual-object representation for interactive synthetic=natural
                  digital video. Proceedings  of  the  IEEE, 86(6):1029–1051, June 1998.
   293   294   295   296   297   298   299   300   301   302   303