Simulation of a Tele-Surgery process through a Live Video Streaming service, using Simu5G and Wowza


Autores/as

  • Héctor Fabio Bermúdez Orozco Universidad del Quindio; Universidad del Cauca. https://orcid.org/0000-0002-8101-3764
  • Jose Luis Arciniegas Herrera University of Cauca
  • Valentina Muñoz Mayor University of Cauca
  • Javier Eduardo Rosas Ibarra University of Cauca

DOI:

https://doi.org/10.22517/23447214.25274

Palabras clave:

LVS, Telesurgery, 5G, Wowza, Simu5G, OBS, VLC, Bitrate

Resumen

Los servicios telemáticos que requieren baja latencia para aplicaciones en tiempo real y que utilizan las redes móviles inalámbricas son cada vez más populares. El caso del servicio de Tele-Cirugía que emplea la técnica de Live Video Streaming –LVS requiere tiempos de latencia del orden de 1ms. Ante la dificultad de implementar escenarios de prueba reales de 5G que permitan caracterizar este tipo de servicios, se presenta en este trabajo un escenario de emulación que emplea Simu5G para simular la red, Wowza como servidor real de video, OBS Studio para la transmisión y VLC media player para la reproducción del contenido. Este escenario de emulación permite modificar parámetros como bitrate, ancho de banda, frecuencia e índice de numerología; con el objetivo de evaluar diferentes configuraciones de red. Variando de forma controlada los parámetros mencionados, se obtienen las pérdidas de paquetes para diferentes valores de bitrate. De acuerdo a los resultados, y para el escenario de prueba particular, el vídeo con una mejor calidad se obtuvo con un bitrate de 3000 Kbps. 

Descargas

Los datos de descargas todavía no están disponibles.

Biografía del autor/a

Héctor Fabio Bermúdez Orozco, Universidad del Quindio; Universidad del Cauca.

is a Titular Professor and Researcher at the Electronic Engineering Program in the University of Quindio, Colombia. PhD in Telematic Engineering from the University of Cauca, Colombia (2020). From the University of Cauca, he received the degrees in Electronics and Telecommunication Engineer in 2000 and Masters in Electronics and Telecommunications in 2010. He made a doctoral research stay at the Polytechnic University of Cartagana UPCT in Cartagena Murcia (Spain) in 2018. He is the coordinator of the Telecommunications Research group (GITUQ) at University of Quindıo. Areas of interest: wireless comunications, radiant systems and propagation, modeling of traffic of telematic services, Quality of Service (QoS)/Quality of user Experience (QoE).

Jose Luis Arciniegas Herrera , University of Cauca

received the degree in telecommunications and electronic engineering from the University of Cauca, Colombia (1997), and the Ph.D. degree from the Polytechnic University of Madrid, Spain (2006). He is a Full Professor with the Department of Telematics, University of Cauca, Colombia. He is a senior researcher in Colciencias score. His current research interests are in the area of services and application using interactive video and multimedia, software architectures, quality of software, Quality of Experience and software process improvement.

Valentina Muñoz Mayor, University of Cauca

received the degree in telecommunications and electronic engineering in 2022 from the University of Cauca, Colombia. She is interested in fields of programming, mainly in the area of web design.

Citas

J. Meara, A. Leather, L. Hagander, B. Alkire, N. Alonso, E. Ameh,

S. Bickler, L. Conteh, A. Dare, J. Davies, E. Merisier, E.-H. Shenaaz, P. Farmer, A. Gawande, R. Gillies, S. Greenberg, C. Grimes, R. Gruen, E. Ismail, and W. Yip, “Global surgery 2030: evidence and solutions for achieving health, welfare, and economic development,” Am J Obstet Gynecol, vol. 213, pp. 338–40, 09 2015.

A. Lacy, R. Bravo, A. Otero-Pineiro, R. Pena, F. Lacy, R. Menchaca,˜ and J. Balibrea, “5g-assisted telementored surgery,” British Journal of Surgery, vol. 106, 09 2019.

Q. Zhang, J. Liu, and G. Zhao, “Towards 5g enabled tactile robotic telesurgery,” ArXiv, mar 2018.

J. J. Rassweiler, R. Autorino, J. Klein, A. Mottrie, A. S. Goezen, J.-U. Stolzenburg, K. H. Rha, M. Schurr, J. Kaouk, V. Patel, et al., “Future of robotic surgery in urology,” BJU international, vol. 120, no. 6, pp. 822– 841, 2017.

H. Alemzadeh, R. Iyer, Z. Kalbarczyk, N. Leveson, and J. Raman, “Adverse events in robotic surgery: A retrospective study of 14 years of fda data,” PloS one, vol. 11, 07 2015.

R. Gupta, S. Tanwar, S. Tyagi, and N. Kumar, “Tactile-internet-based telesurgery system for healthcare 4.0: An architecture, research challenges, and future directions,” IEEE Network, vol. 33, no. 6, pp. 22–29, 2019.

M. A. Usman, N. Y. Philip, and C. Politis, “5g enabled mobile healthcare for ambulances,” in 2019 IEEE Globecom Workshops (GC Wkshps), pp. 1–6, 2019.

H. Laaki, Y. Miche, and K. Tammi, “Prototyping a digital twin for real time remote control over mobile networks: Application of remote surgery,” IEEE Access, vol. PP, pp. 1–1, 02 2019.

R. Wirz, L. G. Torres, P. J. Swaney, H. B. Gilbert, R. Alterovitz, R. J. Webster, K. D. Weaver, and P. T. Russell, “An experimental feasibility study on robotic endonasal telesurgery.,” Neurosurgery, vol. 76 4, pp. 479–84; discussion 484, 2015.

Y. Ebihara, E. Oki, S. Hirano, H. Takano, M. Ota, H. Morohashi, K. Hakamada, S. Urushidani, and M. Mori, “Tele-assessment of bandwidth limitation for remote robotics surgery,” Surgery Today, pp. 1–7, 05 2022.

J. Li, X. Yang, G. Chu, W. Feng, X. Ding, X. Yin, L. Zhang, W. Lv,

L. Ma, L. Sun, R. Feng, J. Qin, X. Zhang, C. Gou, Z. Yu, B. Wei, W. Jiao, Y. Wang, L. Luo, H. Yuan, Y. Chang, Q. Cai, S. Wang, P. C. Giulianotti, Q. Dong, and H. Niu, “Application of improved robot-assisted laparoscopic telesurgery with 5g technology in urology,” European Urology, 2022.

C. Ramırez and R. Reinel, Servicio streaming de video con codificacion H. 265. PhD thesis, Universidad Central “Marta Abreu” de Las Villas, Facultad de Ingenierıa , 2019.

S. Kesavan, s. k. Eswaran, A. Kumar, and K. Vengatesan, “An investigation on adaptive http media streaming quality-of-experience (qoe) and agility using cloud media services,” International Journal of Computers and Applications, pp. 1–14, 02 2019.

W. E. Shabrina, D. Wisaksono Sudiharto, E. Ariyanto, and M. A. Makky, “The qos improvement using cdn for live video streaming with hls,” in 2020 International Conference on Smart Technology and Applications (ICoSTA), pp. 1–5, 2020.

Y. Bandung, Sean, L. B. Subekti, I. G. B. B. Nugraha, and K. Mutijarsa, “Design and implementation of video on demand system based on mpeg dash,” in 2020 International Conference on Information Technology Systems and Innovation (ICITSI), pp. 318–322, 2020.

X. Liu, B. Han, F. Qian, and M. Varvello, “Lime: Understanding commercial 360° live video streaming services,” in Proceedings of the 10th ACM Multimedia Systems Conference, MMSys ’19, (New York, NY, USA), p. 154–164, Association for Computing Machinery, 2019.

S. Li, L. Xu, and S. Zhao, “5g internet of things: A survey,” Journal of Industrial Information Integration, vol. 10, 02 2018.

M. Ayad, S. Medjedoub, B. Mourad, K. Saoudi, and A. Arabi, “Evaluation of 4g / lte mobile network performances based on experimental data,” in 2020 2nd International Workshop on Human-Centric Smart Environments for Health and Well-being (IHSH), pp. 137–141, 2021.

R. Deiny Mardian, M. Suryanegara, and K. Ramli, “Measuring quality of service (qos) and quality of experience (qoe) on 5g technology: A review,” in 2nd IEEE International Conference on Innovative Research and Development, ICIRD 2019, 2nd IEEE International Conference on Innovative Research and Development, ICIRD 2019, (United States),

Institute of Electrical and Electronics Engineers Inc., June 2019. 2nd IEEE International Conference on Innovative Research and Development, ICIRD 2019 ; Conference date: 28-06-2019 Through 30-06-2019.

A. V. Sanchez Bar on, C. Z. Gonzalez Godoy, et al., “Diseno y simu-˜ lacion de red de comunicaci on en la mina de carb on santa mar ıa en el municipio de sogamoso, boyaca,” Universidad Santo Tomas , 2017.

H. F. B. Orozco, J. L. Herrera, and E. A. Hoyos, “Estado del arte de los metodos de evaluaci on de qoe y entornos de emulaci on para el servicio de video en redes lte,” Universidad Catolica de Pereira, Diciembre 2016.

G. Nardini, G. Stea, and A. Virdis, “Scalable real-time emulation of 5g networks with simu5g,” IEEE Access, vol. 9, pp. 148504–148520, 2021.

G. Nardini, D. Sabella, G. Stea, P. Thakkar, and A. Virdis, “Simu5g–an omnet++ library for end-to-end performance evaluation of 5g networks,” IEEE Access, vol. 8, pp. 181176–181191, 2020.

M. Valentina and R. Javier, Simulacion y an alisis del servicio de streaming de video en vivo, durante un proceso de tele-cirugıa usando videos de 360 grados. Tesis de pregrado, Universidad del Cauca, Septiembre 2022.

D. Keremedchiev and L. Kirilov, “Multimedia classroom model for elearning and content creation,” in Multimedia classroom model for elearning and content creation, 12 2020.

H. F. B. Orozco, Modelado de trafico para el servicio de streaming de video en vivo - LVS en redes moviles LTE con calidad de la experiencia . PhD thesis, Universidad del Cauca, Diciembre 2019.

W. O. Leiva and J. E. P. Calderon, “Elaboraci on de videos educativos utilizando obs studio: lectura guiada 2,” researchgate.net, 2020.

P. W. Richards, “The unofficial guide to open broadcaster software,” The Unofficial Guide to OBS, 2021.

A. Kaur and S. Singh, “A survey of streaming protocols for video transmission,” in Proceedings of the International Conference on Data Science, Machine Learning and Artificial Intelligence, pp. 186–191, 2021.

Techopedia, “Bit rate,” in https://www.techopedia.com/definition/2681/bitrate-br, 2018.

3GPP, “Technical specification group services and system aspects,” in TR 21.915 V15.0.0 Release 15 Description; Summary of Rel-15 Work Items, 2019.

3GPP, “User equipment (ue) radio transmission and reception; part 2: Range 2 standalone,” in TS 38.101-2 V17.5.0, 2022.

“Adaptive coding and modulation (acm).” https://www.satcomresources. com/acm-adaptive-coding-and-modulation.

Y. Wang, W. Liu, and L. Fang, “Adaptive modulation and coding technology in 5g system,” in 2020 International Wireless Communications and Mobile Computing (IWCMC), pp. 159–164, 2020.

N. Patriciello, S. Lagen, L. Giupponi, and B. Bojovic, “5g new radio numerologies and their impact on the end-to-end latency,” in 2018 IEEE 23rd international workshop on computer aided modeling and design of communication links and networks (CAMAD), pp. 1–6, IEEE, 2018.

Descargas

Publicado

2023-12-15

Cómo citar

Bermúdez Orozco, H. F., Arciniegas Herrera , J. L. ., Muñoz Mayor, V. ., & Rosas Ibarra , J. E. (2023). Simulation of a Tele-Surgery process through a Live Video Streaming service, using Simu5G and Wowza. Scientia Et Technica, 28(04), 208–215. https://doi.org/10.22517/23447214.25274

Número

Sección

Sistemas y Computación