Investigation of methods of adaptive TCP/НТТР multimedia streaming

Authors

  • Олександра Сергіївна Єременко Kharkiv National University of Radio Electronics Lenina 16, Kharkov, 61166, Ukraine
  • Анатолій Валентинович Персіков Kharkiv National University of Radio Electronics Lenina 16, Kharkov, 61166, Ukraine
  • Назар Володимирович Солоп Kharkiv National University of Radio Electronics Lenina 16, Kharkov, 61166, Ukraine

DOI:

https://doi.org/10.15587/1729-4061.2013.12444

Keywords:

Streaming, multimedia, TCP, HTTP, adaptive streaming

Abstract

The presented article is devoted to the investigation of methods of adaptive multimedia streaming using TCP/HTTP. The joint usage of these protocols depends on the fact that TCP is the most dominant protocol of streaming over the Internet. In addition, the advantage of HTTP is the ability to provide easy traversals of firewalls and NAT devices. Adaptation during the streaming is necessary due to the network conditions variability, which is critical in the transmission of multimedia and tends to result in the delays in the content playback. HTTP adaptive streaming is currently represented by the standard MPEG-DASH. The client-server interaction is arranged according to the standard, which ensures the interoperability of clients and servers from different vendors. To arrange the adaptive TCP streaming it is proposed to use multiple concurrent TCP connections. Therefore, the arrangement of adaptation at different layers significantly increases the streaming efficiency and the quality of service

Author Biographies

Олександра Сергіївна Єременко, Kharkiv National University of Radio Electronics Lenina 16, Kharkov, 61166

PhD, Senior Researcher, Associate Professor

Telecommunication Systems Department

Анатолій Валентинович Персіков, Kharkiv National University of Radio Electronics Lenina 16, Kharkov, 61166

Associate Professor

Telecommunication Systems Department

Назар Володимирович Солоп, Kharkiv National University of Radio Electronics Lenina 16, Kharkov, 61166

Student

Telecommunication Systems Department

References

  1. Stockhammer, T. Dynamic Adaptive Streaming over HTTP – Standards and Design Principles [Текст] / T. Stockhammer // MMSys '11 Proceedings of the second annual ACM conference on Multimedia systems. – 2011. – С. 133–144.
  2. Sodagar, I. The MPEG-DASH Standard for Multimedia Streaming Over the Internet [Текст] / I. Sodagar // MultiMedia, IEEE. – 2011. – Vol.18, Issue 4. – С. 62–67.
  3. ETSI TS 126 234, V9.3.0 Transparent End-to-end Packet-switched Streaming Service; Protocols and codecs. [Текст] – 06.2010. – 185 с.
  4. Еременко, А.С. Сравнительный анализ моделей производительности соединений ТСР и их использование в объединенных сетях [Текст] / Еременко А.С. // Восточно-Европейский журнал передовых технологий. – 2011. – №5/9 (53). – С. 34–39.
  5. Еременко, А.С. Управление передачей трафика транспортной сетью NGN с учетом повторных передач [Текст] / Еременко А.С., Персиков А.В. // Восточно-Европейский журнал передовых технологий. – 2007. – №.5/2 (29) – С. 4–12.
  6. Yan, J. An Analytical Model for Streaming over TCP [Текст] / J. Yan, W. Muhlbauer, B. Plattner // Smart Spaces and Next Generation Wired/Wireless Networking, Lecture Notes in Computer Science. – 2011. – Volume 6869/2011 – С. 370–381.
  7. Wang, B. Multimedia Streaming via TCP: An Analytic Performance Study [Текст] / B. Wang, J. Kurose, P. Shenoy, D. Towsley // ACM Transactions on Multimedia Computing, Communications and Applications. – 2008. – Vol. 4, № 2. – С. 16:1–22.
  8. Goel, A. Low-Latency Adaptive Streaming over TCP [Текст] / A. Goel, C. Krasic, J. Walpole // ACM Transactions on Multimedia Computing, Communications, and Applications (TOMCCAP). – 2008. – Vol.4, Issue 3. – С. 20:1–20:20.
  9. Liu, C. Parallel Adaptive HTTP Media Streaming [Текст] / C. Liu, I. Bouazizi, M. Gabbouj // Computer Communications and Networks (ICCCN), 2011 Proceedings of 20th International Conference. – 2011. – С. 1–6.
  10. Liu, C. Rate Adaptation for Adaptive HTTP Streaming [Текст] / C. Liu, I. Bouazizi, M. Gabbouj // MMSys '11 Proceedings of the second annual ACM conference on Multimedia systems. – 2011. – С. 169–174.
  11. Cisco Visual Networking Index: Forecast and Methodology, 2011–2016 [Электронный ресурс] / Cisco White Paper. – Режим доступа: WWW/ URL: http://www.cisco.com/en/US/solutions/collateral/ns341/ns525/ns537/ns705/ns827/white_paper_c11-481360_ns827_Networking_Solutions_White_Paper.html – 17.03.2013 г. – Загл. с экрана.
  12. Kuschnig, R. An Evaluation of TCP-based Rate-Control Algorithms for Adaptive Internet Streaming of H.264/SVC [Текст] / R. Kuschnig, I. Kofler, H. Hellwagner // MMSys '10 Proceedings of the first annual ACM SIGMM conference on Multimedia systems. – 2010. – С. 157–168.
  13. Kuschnig, R. Improving Internet Video Streaming Performance by Parallel TCP-Based Request-Response Streams [Текст] / R. Kuschnig, I. Kofler, H. Hellwagner // Consumer Communications and Networking Conference (CCNC), 2010 7th IEEE, Conference Publications. – 2010. – С. 1–5.
  14. Kuschnig, R. Evaluation of HTTP-based Request-Response Streams for Internet Video Streaming [Текст] / R. Kuschnig, I. Kofler, H. Hellwagner // MMSys '11 Proceedings of the second annual ACM conference on Multimedia systems. – 2011. – С. 245–256.
  15. Lederer, S. Dynamic Adaptive Streaming over HTTP Dataset [Текст] / S. Lederer, C. Muller, C. Timmerer // Proceedings of the ACM Multimedia Systems Conference. – 2012. – С. 89–94.
  16. ITU-T Y.2007 ITU-T Recommendation Y.2007 (2010), Next Generation Networks – Frameworks and functional architecture models. [Текст] – 2010 – 37 с.
  17. Padhye, J. Modeling TCP Throughput: A Simple Model and its Empirical Validation [Текст] / J. Padhye, V. Firoiu, D. Towsley, J. Kurose // Proc. ACM SIGCOMM Computer Communication Review. – 1998. – Vol.28, №4. – С. 303–314.
  18. Еременко, А.С. Исследование производительности потоковой передачи данных посредством протокола ТСР [Текст] / Еременко А.С. // Вестник НТУ «ХПИ». – 2011. – №34. – С. 80–87.
  19. Afanasyev, A. Host-to-Host congestion control for TCP [Текст] / A. Afanasyev, N. Tilley, P. Reiher, L. Kleinrock // IEEE Communication Surveys and Tutorials. – 2010. – Vol.12, Issue 3. – С. 304–342.
  20. Ha, S. CUBIC: A New TCP-friendly High-speed TCP Variant [Текст] / S. Ha, I. Rhee, L. Xu. // SIGOPS Operating Systems Review. – 2008. – T. 42(5) – C. 64–74.
  21. Shunmuga Krishnan, S. Video stream quality impacts viewer behavior: inferring causality using quasi-experimental designs [Текст] / S. Shunmuga Krishnan, Ramesh K. Sitaraman // Proceedings of the 2012 ACM conference on Internet measurement conference. – 2012. – С. 211–224.
  22. Li, Z. Network Friendly Video Distribution [Текст] / Z. Li, M. K. Sbaiz, Y. Hadjadj-Aouly, A. Graveyz, D. Alliez, J. Garnier, G. Simonz, K. Singh // Network of the Future (NOF), 2012 Third International Conference, Conference Publications. – 2012. – с. 1–8.
  23. Sanchez, Y. Efficient HTTP-based streaming using Scalable Video Coding [Текст] / Y. Sanchez, T. Schierl, C. Hellge, T. Wiegand, D. Hong, D. De Vleeschauwer, W. Van Leekwijck, Y. Le Louedec // Signal Processing: Image Communication. – 2012. – Vol.27 Issue 4. – С. 329–342.
  24. Metzger, F. A performance evaluation framework for video streaming [Текст] / F. Metzger, A.F. Rafetseder, K. Tutschku // Packet Video Workshop (PV), 2012 19th International. – 2012. – С. 19–24.
  25. Rafetseder, A. Exploring YouTube's content distribution network through distributed application-layer measurements: a first view [Текст] / A.F. Rafetseder, F. Metzger, D. Stezenbach, K. Tutschku // Cnet '11 Proceedings of the 2011 International Workshop on Modeling, Analysis, and Control of Complex Networks. – 2011. – С. 31–36.
  26. Stockhammer, T. (2011). Dynamic Adaptive Streaming over HTTP – Standards and Design Principles. MMSys '11 Proceedings of the second annual ACM conference on Multimedia systems, 133–144.
  27. Sodagar, I. (2011). The MPEG-DASH Standard for Multimedia Streaming Over the Internet. MultiMedia, IEEE, Vol.18, Issue 4, 62–67.
  28. ETSI TS 126 234, V9.3.0 (2010). Transparent End-to-end Packet-switched Streaming Service; Protocols and codecs, 185.
  29. Yeremenko, O.S. (2011) Comparative analysis of TCP connections performance models and its application to internetworks [Sravnitelnyiy analiz modeley proizvoditelnosti soedineniy TCP i ih ispolzovanie v ob'edinennyih setyah]. Eastern-European Journal of Enterprise Technologies, №5/9 (53), 34–39.
  30. Yeremenko, O.S., Persikov A.V. (2007) Traffic management in transport NGN network considering retransmissions [Upravlenie peredachey trafika transportnoy setyu NGN s uchetom povtornyih peredach] Eastern-European Journal of Enterprise Technologies, №.5/2 (29), 4–12.
  31. Yan, J., Muhlbauer, W., Plattner, B. (2011). An Analytical Model for Streaming over TCP. Smart Spaces and Next Generation Wired/Wireless Networking, Lecture Notes in Computer Science, Volume 6869/2011, 370–381.
  32. Wang, B., Kurose, J., Shenoy, P., Towsley, D. (2008). Multimedia Streaming via TCP: An Analytic Performance Study. ACM Transactions on Multimedia Computing, Communications and Applications, Vol. 4, № 2., 16:1–22.
  33. Goel, A., Krasic, C., Walpole, J. (2008). Low-Latency Adaptive Streaming over TCP. ACM Transactions on Multimedia Computing, Communications, and Applications (TOMCCAP), Vol.4, Issue 3, 20:1–20:20.
  34. Liu, C., Bouazizi, I., Gabbouj, M. (2011). Parallel Adaptive HTTP Media Streaming. Computer Communications and Networks (ICCCN), 2011 Proceedings of 20th International Conference, 1–6.
  35. Liu, C., Bouazizi, I., Gabbouj, M. (2011). Rate Adaptation for Adaptive HTTP Streaming. MMSys '11 Proceedings of the second annual ACM conference on Multimedia systems, 169–174.
  36. Cisco Visual Networking Index: Forecast and Methodology, 2011–2016 (2012). Cisco White Paper, 16. URL: http://www.cisco.com/en/US/solutions/collateral/ns341/ns525/ns537/ns705/ns827/white_paper_c11-481360_ns827_Networking_Solutions_White_Paper.html (accessed 18 March 2013)
  37. Kuschnig, R., Kofler, I., Hellwagner, H. (2010). An Evaluation of TCP-based Rate-Control Algorithms for Adaptive Internet Streaming of H.264/SVC. MMSys '10 Proceedings of the first annual ACM SIGMM conference on Multimedia systems, 157–168.
  38. Kuschnig, R., Kofler, I., Hellwagner, H. (2010). Improving Internet Video Streaming Performance by Parallel TCP-Based Request-Response Streams. Consumer Communications and Networking Conference (CCNC), 2010 7th IEEE, Conference Publications, 1–5.
  39. Kuschnig, R., Kofler, I., Hellwagner, H. (2011). Evaluation of HTTP-based Request-Response Streams for Internet Video Streaming. MMSys '11 Proceedings of the second annual ACM conference on Multimedia systems, 245–256.
  40. Lederer, S., Muller, C., Timmerer, C. (2012). Dynamic Adaptive Streaming over HTTP Dataset. Proceedings of the ACM Multimedia Systems Conference, 89–94.
  41. ITU-T Y.2007 (2010). Next Generation Networks – Frameworks and functional architecture models, ITU-T Recommendation Y.2007, 37.
  42. Padhye, J., Firoiu, V., Towsley, D., Kurose, J. (1998). Modeling TCP Throughput: A Simple Model and its Empirical Validation. Proc. ACM SIGCOMM Computer Communication Review, Vol.28, №4, 303–314.
  43. Yeremenko, O.S. (2011) Research of performance of TCP streaming [Issledovanie proizvoditelnosti potokovoy peredachi dannyih posredstvom protokola ТСР] Vestnik NTU «KPI», №34, 80–87.
  44. Afanasyev, A., Tilley, N., Reiher, P., Kleinrock L. (2010). Host-to-Host congestion control for TCP. IEEE Communication Surveys and Tutorials, Vol.12, Issue 3, 304–342.
  45. Ha, S., Rhee, I., Xu, L. (2008). CUBIC: A New TCP-friendly High-speed TCP Variant. SIGOPS Operating Systems Review, T. 42(5), 64–74.
  46. Shunmuga Krishnan, S., Sitaraman Ramesh, K. (2012). Video stream quality impacts viewer behavior: inferring causality using quasi-experimental designs. Proceedings of the 2012 ACM conference on Internet measurement conference, 211–224.
  47. Li, Z., Sbaiz, M. K., Hadjadj-Aouly, Y., Graveyz, A., Alliez, D., Garnier, J., Simonz, G., Singh, K. (2012). Network Friendly Video Distribution. Network of the Future (NOF), 2012 Third International Conference, Conference Publications, 1–8.
  48. Sanchez, Y., Schierl, T., Hellge, C., Wiegand, T., Hong, D., De Vleeschauwer, D., Van Leekwijck, W., Le Louedec, Y. (2012). Efficient HTTP-based streaming using Scalable Video Coding. Signal Processing: Image Communication. Vol.27 Issue 4, 329–342.
  49. Metzger, F., Rafetseder, A.F., Tutschku, K. (2012). A performance evaluation framework for video streaming. Packet Video Workshop (PV), 2012 19th International, 19–24.
  50. Rafetseder, A., Metzger, F., Stezenbach, D., Tutschku, K. (2011). Exploring YouTube's content distribution network through distributed application-layer measurements: a first view. Cnet '11 Proceedings of the 2011 International Workshop on Modeling, Analysis, and Control of Complex Networks, 31–36.

Published

2013-04-25

How to Cite

Єременко, О. С., Персіков, А. В., & Солоп, Н. В. (2013). Investigation of methods of adaptive TCP/НТТР multimedia streaming. Eastern-European Journal of Enterprise Technologies, 2(9(62), 42–47. https://doi.org/10.15587/1729-4061.2013.12444

Issue

Section

Information and controlling system