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D. Wu, Y. T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang, H. J. Chao, On end-to-end architecture for transporting MPEG-4 video over the Internet, IEEE Trans. on Circuits and Systems for Video Technology, vol. 10, no. 6, Sept. (2000)

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Semantic-aware Link Layer Scheduling of MPEG-4 Video.. - Klaue, Gross, Karl.. (2003)   (Correct)

....of the transport medium. But bandwidth, delay, and loss rate vary over time and the current Internet lacks QoS support. To overcome these problems, various mechanisms have been developed. They can roughly be divided in feedback control, source rate adaptation, packetization, and error control [21]. Feedback control is done by estimating available network bandwidth based on packet loss information at the receiver. Source rate adaptation is achieved with, e.g. frame skipping or the more sophisticated multi layer coding aka fine grained scalability (FGS) or rate distortion theory based ....

....control is done by estimating available network bandwidth based on packet loss information at the receiver. Source rate adaptation is achieved with, e.g. frame skipping or the more sophisticated multi layer coding aka fine grained scalability (FGS) or rate distortion theory based approaches. [8, 10, 21]. Packetization schemes try to minimize overhead while maximizing robustness against losses. Effectively inter packet dependencies are minimized [21] Error control approaches include forward error correction (FEC) retransmission schemes and error resilient encoding [18, 19] All these mechanisms ....

[Article contains additional citation context not shown here]

D. Wu, Y. T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang, and H. J. Chao. On endto -end architecture for transporting mpeg-4 video over the internet. IEEE Transactions on Circuits and Systems for Video Technology, 10(6):923--941, September 2000.


Rate-Distortion Optimized Streaming of Packetized Media - Chou, Miao (2001)   (46 citations)  (Correct)

....is an extension of these latter methods. Still others use signal processing FEC for error control [36, 37, 38, 39, 40] for which rate distortion optimization is still a research topic [41] Some papers have investigated the problem of error control using retransmission based protocols, e.g. [42, 43, 44, 45, 46, 47, 48]. However, with the exception of those works listed in the previous paragraph, to our knowledge, none are rate distortion optimized. Finally, a few papers suggest the use of multiple qualities of service (e.g. diffserv) to support more cost effective media transmission at a higher quality [49, ....

D. Wu, Y. T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang, and H. J. Chao. On end-to-end architecture for transporting MPEG-4 video over the Internet. IEEE Trans. Circuits and Systems for Video Technology, 10(6):923--941, September 2000.


Streaming Video over the Internet: Approaches and Directions - Wu, al. (2001)   (25 citations)  (Correct)

....adapting the video transmission rate. Typically, feedback is employed by source based rate control mechanisms. Based upon the feedback information about the network, the sender could regulate the rate of the video stream. The source based rate control can be applied to both unicast (see Fig. 7(a) [70] and multicast (see Fig. 7(b) 4] For unicast video, existing source based rate control mechanisms follow two approaches: probe based and model based approach [71] The probe based approach is based on probing experiments. Speci cally, the source probes for the available network bandwidth by ....

....two approaches: probe based and model based approach [71] The probe based approach is based on probing experiments. Speci cally, the source probes for the available network bandwidth by adjusting the sending rate in a way that could maintain the packet loss ratio # below a certain threshold # ## [70]. There are twoways to adjust the sending rate: 1) additive increase and multiplicative decrease [70] and (2) multiplicative increase and multiplicative decrease [64] The model based approach is based on a throughput model of a transmission control protocol (TCP) connection. Speci cally, the ....

[Article contains additional citation context not shown here]

D. Wu, Y. T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang, and H. J. Chao, \On end-to-end architecture for transporting MPEG-4 video over the Internet," IEEE Trans. on Circuits and Systems for VideoTechnology, vol. 10, no. 6, pp. 923-941, Sept. 2000.


Content-Based Adaptation of Streamed Multimedia - Nikki Cranley Liam   (Correct)

No context found.

D. Wu, Y. T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang, H. J. Chao, On end-to-end architecture for transporting MPEG-4 video over the Internet, IEEE Trans. on Circuits and Systems for Video Technology, vol. 10, no. 6, Sept. (2000)


Telecommunication Systems 28:2, 133--150, 2005 2005.. - Streaming Over The (2005)   (Correct)

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D. Wu, T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang and H.J. Chao, On end-to-end architecture for transporting MPEG-4 video over the Internet, IEEE Transactions on Circuits and Systems for Video Technology (2000).


Securing Media for Adaptive Streaming - Venkatramani, Westerink.. (2003)   (Correct)

No context found.

Wu D., Hou T., Zhu W., Lee H.-J., Chiang T., Zhang Y.-Q. and Chao H. J. On End-to-End Architecture for Transporting MPEG-4 Video over the Internet. IEEE Transactions on Circuits and Systems for Video Technology, 10(6):923--941, 2000.


EvalVid - A Framework for Video Transmission and Quality.. - Klaue, Rathke, Wolisz (2003)   (Correct)

No context found.

D. Wu, Y. T. Hou, W. Zhu, H.-J. Lee, T. Chiang, Y.-Q. Zhang, and H. J. Chao. On endto -end architecture for transporting mpeg-4 video over the internet. IEEE Transactions on Circuits and Systems for Video Technology, 10(6):923--941, September 2000.

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