References

[1] ITU-T Recommendation H.261 (1993), “Video codec for audiovisual services at p × 64 kbps,” 1993.

[2] CCITT SGXV, “Description of reference model 8 (RM8),” Doc. 525, Jun. 1989.

[3] ISO/IEC 11172-2:1993, “Information technology: coding of moving pictures and associated audio for digital storage media at up to about 1.5 Mbps: part 2: video,” 1993.

[4] E. Viscito and C. Gonzales, “A video compression algorithm with adaptive bit allocation and quantization,” Proc. Visual Communications and Image Processing (VCIP'91), Boston, MA, Vol. 1605, pp. 58–72, 1991.

[5] ISO/IEC 13818-2:1996, “Information technology: generic coding of moving pictures and associated audio information: part 2: video,” 1996.

[6] MPEG Test Model Editing Committee, “MPEG-2 Test Model 5,” Doc. ISO/IEC JTC1/SC29/WG11 N400, Sydney MPEG meeting, Apr. 1993.

[7] ITU-T Recommendation H.263 (1996), “Video coding for low bitrate communication,” 1996.

[8] ITU-T/SG15, “Video codec test model, TMN8,” Doc. Q15-A-59, Portland, OR, Jun. 1997.

[9] MPEG Video, “MPEG-4 video verification model 5.0,” Doc. ISO/IEC JTC1/SC29/WG11N1469, Maceió MPEG meeting, Nov. 1996.

[10] T. Chiang and Y.Q. Zhang, “A new rate control scheme using quadratic rate distortion model,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 7, pp. 246–250, Feb. 1997.

[11] MPEG Video, “MPEG-4 video verification model 8.0,” Doc. ISO/IEC JTC1/SC29/WG11 N1796, Stockholm MPEG meeting, Jul. 1997.

[12] A. Vetro, H. Sun, and Y. Wang, “MPEG-4 rate control for multiple video objects,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 9, No. 1, pp. 186–199, Feb. 1999.

[13] J. Ronda, M. Eckert, F. Jaureguizar, and N. García, “Rate control and bit allocation for MPEG-4,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 9, No. 8, pp. 1243–1258, Dec. 1999.

[14] Y. Sun and I. Ahmad, “A robust and adaptive rate control algorithm for object-based video coding,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 14, No. 10, pp. 1167–1182, Oct. 2004.

[15] Y. Sun and I. Ahmad, “Asynchronous rate control for multi-object videos,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 15, No. 8, pp. 1007–1018, Aug. 2005.

[16] ISO/IEC 14496-10:2003/ITU-T Recommendation H.264, “Advanced video coding (AVC) for generic audiovisual services,” 2003.

[17] Z.G. Li, F. Pan, K.P. Lim, G. Feng, X. Lin, and S. Rahardaj, “Adaptive basic unit layer rate control for JVT,” Doc. JVT-G012, 7th meeting, Pattaya, Thailand, Mar. 2003.

[18] Z. He and S.K. Mitra, “A unified rate-distortion analysis framework for transform coding,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 11, No. 12, pp. 1221–1236, Dec. 2001.

[19] ISO/IEC 14496-2:2001, “Information technology: coding of audio-visual objects: part 2: visual,” 2001.

[20] L.D. Soares and F. Pereira, “Refreshment need metrics for improved shape and texture object-based resilient video coding,” IEEE Transactions on Image Processing, Vol. 12, No. 3, pp. 328–340, Mar. 2003.

[21] L.D. Soares and F. Pereira, “Adaptive shape and texture intra refreshment schemes for improved error resilience in object-based video,” IEEE Transactions on Image Processing, Vol. 13, No. 5, pp. 662–676, May 2004.

[22] S. Shirani, B. Erol, and F. Kossentini, “A concealment method for shape information in MPEG-4 coded video sequences,” IEEE Transactions on Multimedia, Vol. 2, No. 3, pp. 185–190, Sep. 2000.

[23] L.D. Soares and F. Pereira, “Spatial shape error concealment for object-based image and video coding,” IEEE Transactions on Image Processing, Vol. 13, No. 4, pp. 586–599, Apr. 2004.

[24] G.M. Schuster, X. Li, and A.K. Katsaggelos, “Shape error concealment using hermite splines,” IEEE Transactions on Image Processing, Vol. 13, No. 6, pp. 808–820, Jun. 2004.

[25] P. Salama and C. Huang, “Error concealment for shape coding,” Proc. IEEE International Conference on Image Processing, Rochester, NY, Vol. 2, pp. 701–704, Sep. 2002.

[26] L. D. Soares and F. Pereira, “Motion-based shape error concealment for object-based video,” Proc. IEEE International Conference on Image Processing, Singapore, Oct. 2004.

[27] L.D. Soares and F. Pereira, “Combining space and time processing for shape error concealment,” Proc. Picture Coding Symposium, San Francisco, CA, Dec. 2004.

[28] L.D. Soares and F. Pereira, “Spatial Texture Error Concealment for Object-based Image and Video Coding,” Proc. EURASIP Conference on Signal and Image Processing, Multimedia Communications and Services, Smolenice, Slovakia, Jun. 2005.

[29] ISO/IEC 14496-2:2001, “Information technology: coding of audio-visual objects: part 2: visual,” 2001.

[30] P. Nunes and F. Pereira “Joint rate control algorithm for low-delay MPEG-4 object-based video encoding,” IEEE Transactions on Circuits and Systems for Video Technology (submitted).

[31] ISO/IEC 14496-5:2001, “Information technology: coding of audio-visual objects: part 5: reference software,” 2001.

[32] MPEG Video, “MPEG-4 video verification model 5.0,” Doc. N1469, Maceió MPEG meeting, Nov. 1996.

[33] A. Vetro, H. Sun, and Y. Wang, “MPEG-4 rate control for multiple video objects,” IEEE Transactions on Circuits and Systems For Video Technology, Vol. 9, No. 1, pp. 186–199, Feb. 1999.

[34] J. Ronda, M. Eckert, F. Jaureguizar, and N. Garcia, “Rate control and bit allocation for MPEG-4,” IEEE Transactions on Circuits and Systems For Video Technology, Vol. 9, No. 8, pp. 1243–1258, Dec. 1999.

[35] H.-J. Lee, T. Chiang, and Y.-Q. Zhang, “Scalable rate control for MPEG-4 video,” IEEE Transactions on Circuits and Systems For Video Technology, Vol. 10, No. 6, pp. 878–894, Sep. 2000.

[36] P. Nunes and F. Pereira, “Scene level rate control algorithm for MPEG-4 video encoding,” Proc. VCIP'01, San Jose, CA, Vol. 4310, pp. 194–205, Jan. 2001.

[37] Y. Sun and I. Ahmad, “A robust and adaptive rate control algorithm for object-based video coding,” IEEE Transactions on Circuits and Systems For Video Technology, Vol. 14, No. 10, pp. 1167–1182, Oct. 2004.

[38] Y. Sun and I. Ahmad, “Asynchronous rate control for multi-object videos,” IEEE Transactions on Circuits and Systems For Video Technology, Vol. 15, No. 8, pp. 1007–1018, Aug. 2005.

[39] P. Nunes and F. Pereira, “Rate control for scenes with multiple arbitrarily shaped video objects,” Proc. PCS'97, Berlin, Germany, pp. 303–308, Sep. 1997.

[40] G. Bjontegaard,“Calculation of average PSNR differences between RD-curves,” Doc. VCEG-M33, Austin, TX, Apr. 2001.

[41] ISO/IEC 14496-10:2003/ITU-T Recommendation H.264, “Advanced video coding (AVC) for generic audiovisual services,” 2003.

[42] T. Chiang, Y.Q. Zhang, “A new rate control scheme using quadratic rate distortion model,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 7, pp. 246–250, Feb. 1997.

[43] Z. He, S.K. Mitra, “A unified rate-distortion analysis framework for transform coding,” IEEE Transactions on Circuits and Systems for Video Technology, Vol. 11, No. 12, pp. 1221–1236, Dec. 2001.

[44] ISO/IEC 14496-2, “Information technology: coding of audio-visual objects: part 2: visual,” Dec. 1999.

[45] R.C. Gonzalez and R.E. Woods, Digital Image Processing, 2nd Ed., Prentice Hall, 2002.

[46] L.D. Soares and F. Pereira, “Motion-based shape error concealment for object-based video,” Proc. IEEE International Conference on Image Processing, Singapore, Oct. 2004.

[47] L.D. Soares and F. Pereira, “Error resilience and concealment performance for MPEG-4 frame-based video coding,” Signal Processing: Image Communication, Vol. 14, Nos. 6–8, pp. 447–472, May 1999.

[48] L.D. Soares and F. Pereira, “Refreshment need metrics for improved shape and texture object-based resilient video coding,” IEEE Transactions on Image Processing, Vol. 12, No. 3, pp. 328–340, Mar. 2003.

[49] L.D. Soares and F. Pereira, “Temporal shape error concealment by global motion compensation with local refinement,” IEEE Transactions on Image Processing, Vol. 15, No. 6, pp. 1331–1348, Jun. 2006.

[50] L.D. Soares and F. Pereira, “Adaptive shape and texture intra refreshment schemes for improved error resilience in object-based video,” IEEE Transactions on Image Processing, Vol. 13, No. 5, pp. 662–676, May 2004.

[51] L.D. Soares and F. Pereira, “Spatial shape error concealment for object-based image and video coding,” IEEE Transactions on Image Processing, Vol. 13, No. 4, pp. 586–599, Apr. 2004.

[52] L.D. Soares and F. Pereira, “Spatial scene level shape error concealment for segmented video,” Proc. Picture Coding Symposium, Beijing, China, Apr. 2006.

[53] L.D. Soares and F. Pereira, “Spatio-temporal scene level error concealment for shape and texture data in segmented video content,” Proc. IEEE International Conference on Image Processing, Atlanta, GA, Oct. 2006.

[54] L.D. Soares and F. Pereira, “Spatial texture error concealment for object-based image and video coding,” Proc. EURASIP Conference on Signal and Image Processing, Multimedia Communications and Services, Smolenice, Slovakia, Jun. 2005.

[55] L.D. Soares and F. Pereira, “Combining space and time processing for shape error concealment,” Proc. Picture Coding Symposium, San Francisco, CA, Dec. 2004.

[56] ISO/IEC 14496-10:2003/ITU-T Recommendation H.264, “Advanced video coding (AVC) for generic audiovisual services,” 2003.

[57] “Joint model reference encoding methods and decoding concealment methods,” JVT-I049d0, San Diego, CA, Sep. 2003.

1 In the case of H.264/AVC, this mechanism is called the hypothetical reference decoder (HRD).

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