DOI:

https://doi.org/10.14483/22484728.18448

Publicado:

2019-12-06

Número:

Vol. 2 Núm. 2 (2019): Edición especial

Sección:

Visión Investigadora

Clasificación de parámetros y criterios al ensamblar la ráfaga

Classification of parameters and criteria when assembling the burst

Autores/as

Palabras clave:

Optical burst switching, Assemble, Optical networks, Blocking probability, End to end delay (en).

Palabras clave:

Conmutación óptica de ráfagas, Ensamble, Redes ópticas, Probabilidad de bloqueo, Retardo extremo a extremo (es).

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Resumen (es)

Este artículo presenta una clasificación de algunos de los algoritmos o mecanismos para ensamblar la ráfaga de datos existentes en la literatura científica de las redes de conmutación óptica de ráfagas, basándose en los diferentes parámetros y criterios que inciden en el proceso de ensamblaje. Resaltando, que dicha clasificación es el resultado de la etapa de revisión del estado del arte en el trabajo de grado titulado “Algoritmo Adaptativo basado en la Lógica Difusa y PSO para el Ensamble de Ráfagas en una red OBS Distribuida”, a nivel de maestría. La forma en que se ensambla la ráfaga es de gran importancia ya que es el proceso que gestiona la carga de tráfico entrante a una red y de esta manera gestiona el desempeño de toda la red.

En algunos casos, el desempeño es analizado en cuanto a la probabilidad de bloqueo y en el retardo de extremo a extremo de las ráfagas transmitidas, entre otros parámetros. Los resultados ayudaran a los nuevos investigadores, interesados en las redes ópticas y más en el proceso de ensamblaje, tener una introducción general de las redes de conmutación óptica, conocer y diferenciar los parámetros y criterios que inciden a la hora de ensamblar una ráfaga de datos, señalando algunas de las combinaciones que se han aplicado en otros trabajos. Además, poder identificar algunos de los problemas potenciales abiertos en este tema.

Resumen (en)

This article presents a classification of some of the algorithms or mechanisms for assembling burst of data existing in the scientific literature of the networks switching optical of burst, based on the different parameters and criteria that affect of assembly process. Marking out, that this classification is the result of the revision stage of the "state of the art" in the degree work entitled "Adaptive Algorithm based on fuzzy logic and PSO for the assembly of bursts in a distributed network of OBS", at level master's degree. The way in which the burst is assembled is of great importance, since it is the process manage´s the loading of incoming traffic to a network and in this way manages the performance of the entire network.

In some cases, the performance is analyzed in terms of the probability of blockage and in the end-to-end delay of the transmitted bursts, among other parameters. The results will help new researchers, interested in the optical networks and more in the process of assembly, have a synthesis of the basic concepts of optical switching networks, know and differentiate the parameters and criteria that affect when assembling a burst of data, pointing out some of the combinations that have been applied in other works. Also, be able to identify some of the potential problems open on this topic.

Referencias

MINTIC, Vive digital. Internet: Nacional, Internet por ancho de banda. Cifras del 2010-1T al 2016-4T. Fuente: MINTIC-SIUST, 2010-2016. http://colombiatic.mintic.gov.co/estadisticas/stats.php?s=1

MINTIC. Boletín trimestral del sector TIC. Cifras cuarto trimestre de 2017, Conexiones Banda Ancha. Ministerio de Tecnologías de la Información y las Comunicaciones, Republica de Colombia. 2018.

Ch. Qiao, y M. Yoo., "Optical Burst Switching (OBS) - A New Paradigm for an Optical Internet", University at Buffalo, New York, vol. 8, pp. 69-84, 1999.

Y. Chen. et al., "Optical Burst Switching (OBS): A New Area in Optical Networking Research". IEEE Network, vol. 18, no. 3, pp. 16-23, 2004. https://doi.org/10.1109/MNET.2004.1301018

J. Jue, y V. Vokkarane., "Optical Burst Switched Networks (Optical Networks)". Libro. New York USA: Springer Sciencie+Bussines Media, Inc., 2005.

M. Klinkowski. et al., "Adaptive Routing Algorithms for Optical Packet Switching Networks". In Proceedings of the 9th IFIP Working Conference on Optical Networks Design and Modelling, 2005. https://doi.org/10.1109/ONDM.2005.1427006

A. Lénin Almeida, "COMPORTAMIENTO DE REDES OBS (OPTICAL BURST SWITCHING) CON TRÁFICO TCP". Escuela Politécnica Nacional, Tesis Doctoral, Quito, 2010.

J. G. López, "DISEÑO DE MÉTODOS CROSS LAYER COGNITIVOS PARA REDES DE COMUNICACIÓN ÓPTICA DE RÁFAGAS (OBS)". Tesis presentada a la Facultad de Ingeniería Electrónica y Telecomunicaciones de la Universidad del Cauca para la obtención del Título de Doctor en Ciencias de la Electrónica, 2015.

M. Kozak, "Efficient Control, Routing, and Wavelength Assignment in Loss-Less Optical Burst Switching Networks". Czech Technical University in Prague, Disertation Thesis PhD., 2015.

N. Liamcharoen, "PERFORMANCE ANALAYSIS OF A PROPOSED HYBRID OPTICAL NETWORK". University of Pittsburgh, PhD Candidate, 2016.

T. Venkatesh y C. S., Ram Murthy, "Introduction to Optical Burst Switching". In An Analytical Approach to Optical Burst Switched Network, New York USA: Springer Sciencie+Bussines Media, LLC, pp. 1-41, 2010. https://doi.org/10.1007/978-1-4419-1510-8_1

V. Kishen y Dr. k. Suresh., "Efficient Bandwidth Utilization for Optical Switching in WDM Networks". International Journal of Advanced Technology and Innovative Research, March, vol. 7, pp. 332-334, 2015.

M. Mangwala y O. Ekabua., "A Survey of Burst Assembly Algorithms for Optical Burst Switching (OBS)". Research Article, International Journal of Engineering and Technology Research, Department of Computer Science, North West University, August, vol. 1, No. 7, pp. 107-115, 2013.

A. Yayah, et al., "Burst Assembly Techniques in Optical Burst Switching (OBS)". Faculty of Computing, Universiti Teknologi Malaysia, 1st International Conference of Recent Trends in Information and Communication Technologies, Skudai, Johor, Malaysia, September 2014.

A. Samad, et al., "A Review Burst Assembly Techniques in Optical Burst Switching (OBS)". Faculty of Computing, Universiti Teknologi Malaysia. Jurnal Teknologi, Johor, Malaysia, vol. 73, no. 2, February 2015. https://doi.org/10.11113/jt.v73.4183

A. Umaru, et al., "Fuzzy-Based Adaptive Hybrid Burst Assembly Technique for Optical Burst Switched Networks". Hindawi Publishing Corporation, Journal of Computer Networks and Communications, Research Article, pp 10, November 2014. https://doi.org/10.1155/2014/803518

A. GE, et al., "On Optical Burst Switching and Self-Similar Traffic". IEEE Communications Letters, vol. 4, no. 3, pp. 98-100, March 2000. https://doi.org/10.1109/4234.831037

G. Hu, et al., "Does burst assembly really reduce the self-similarity.?" In Optical Fiber Communication Conference. Optical Society of America, University of Stuttgart, Institute of Communication Networks and Computer Engineering, 2003.

X. Cao, et al., "Assembling TCP/IP Packets in Optical Burst Switched Networks". Department of Computer Science and Engineering. State University of New York at Buffalo. In Proceedings of the IEEE Global Telecommunications Conference, (GLOBECOM '02), Taipei, Taiwan, pp. 17-21, November 2002.

A. Gupta, et al., "Investigation of OBS assembly technique based on various scheduling techniques for maximizing throughput". Journal Elsevier, Optik, vol. 124, pp. 840-844, 2013. https://doi.org/10.1016/j.ijleo.2012.01.044

X. Yu, et al., "A Study of traffic statistics of assembled Burst traffic in Optical Burst switched networks". Department of Computer Science and Engineering, State University of New York at Buffalo, pp. 149-159, 2002. https://doi.org/10.1117/12.475293

A. K. Garg, "A Novel Hybrid Approach for Efficient Network Utilization of OBS". International Journal of Software Engineering and its Applications. Department of Electronics and Communication Engineering. Mullana, India, Vol. 6, no 1, January 2012.

R. Adgaonkar, y S. Sharma., "Review of Burst Scheduling Algorithm in WDM Optical Burst Switching Network". IJCSI International Journal of Computer Science Issues, vol. 8, no 3, November 2011.

G. Hu. "Quality of Service Guarantee in the Edge Node of Optical Packet/Burst Switched Networks with Traffic Assembly". Universitat Stuttgart zur Erlangung der Wurde eines Doktor-Ingenieurs (Dr. Ing.). Juli 2009.

M. Dawood, et al., "Adaptive Data Burst Assembly in OBS Networks". International Journal of Research and Scientific Innovation (URSI), vol. 3, June 2016. https://doi.org/10.1109/ICDIPC.2016.7470817

S. Dumych., "Study on Traffic Aggregation Algorithms for Edge Nodes of Optical Burst Switching Network". Lviv Polytechnic National University, Ukraine, 23-26, pp. 947-949, February 2016.

X. Jiang, et al., "A Novel Burst Assembly Algorithm for OBS Networks Based on Burst Size and assembly Time Prediction". Department of Computer Science and Telecommunications Engineering. Journal of Computational Information Systems, Jiangsu University, vol. IX, no. 2, pp. 463-475, 2013.

A. Sideri, y E. Vargarigos., "New Assembly Techniques for Optical Burst Switched Networks Based on Traffic Prediction". IFIP. Computer Engineering and Informatics Dept. International Federation for Information Processing, University of Patrás. Greece, pp. 358-367, 2007. https://doi.org/10.1007/978-3-540-72731-6_39

D. Patel, et al., "A Novel Scheme for Efficient Bandwidth Utilization in Optical Burst Switched Network". International Journal of Research and Scientific Innovation (URSI), vol. 3, June 2016.

K. Seklou, et al., "New assembly techniques and fast reservation protocols for optical burst switched networks based on traffic prediction". Journal Optical Switching and Networking, Elsevier, Department of Computer Engineering and Informatics, University of Patras and Research Academic Computer Technology Institute, Patras, Greece, pp. 132-148, 2013. https://doi.org/10.1016/j.osn.2012.08.002

V. Reena, et al., "Performance Evaluation of Efficient Assembly of TCP Traffic for Optical Burst Switching Networks". National Conference on System Design and Information Processing, 2013.

A. K. Garg., "Traffic prediction based burst assembly mechanism for OBS". Department of Electronics & Communication Engg. Deenbandhu Chhotu Ram University of Science & Technology, India, vol 124, pp. 2017-2019, August 2013.

B. Kantarci, y S. Oktug., "ADAPTIVE THRESHOLD BASED BURST ASSEMBLY IN OBS NETWORKS". In Proceedings of the Canadian Conference on Electrical and Computer Engineering (CCECE '06), Ottawa, Canada, pp. 1419-1422, May 2006. https://doi.org/10.1109/CCECE.2006.277345

J. Prado, et al., "Análisis del desempeño de una red OBS distribuida al integrar un método cognitivo basado en metaheurística para el ensamble de ráfagas". Universidad del Cauca, Trabajo de grado, pregrado, Grupo de I+D Nuevas Tecnologías en Telecomunicaciones -GNTT, Popayán, 2015.

A. Umaru A, et al., "A NOVEL FUZZY-BASED ADAPTIVE TIMER BURST ASSEMBLY ALGORITHM FOR OPTICAL BURST SWITCHING NETWORKS". Journal of Theoretical and Applied Information Technology, vol. 67, no. 1, September 2014.

A. Umaru, et al., "A Fuzzy-based Burst Assembly Approach to Reduce End-to-End Delay in OBS Networks". 5th International Conference on Photonics (ICP), Faculty of Computing, Universiti Teknologi Malaysia, Kuala Lumpur, Skudai, Malaysia, 2-4 September 2014. https://doi.org/10.1109/ICP.2014.7002302

H-L. Liu, y Sh. Jiang., "A mixed-length and time threshold burst assembly algorithm based on Traffic prediction in OBS network". International Journal of Computers Communications Control, vol. 2, pp. 87-93, 2012.

A. Yayah, et al., "Hybrid offset-time and burst assembly algorithm (H-OTBA) for delay sensitive applications over optical burst switching networks". International Journal of Communication Systems, Faculty of Computing, Universiti Teknologi Malaysia, Johor, Malaysia, vol. 29, no. 2, pp. 251-261, May 2014. https://doi.org/10.1002/dac.2821

V. Zagorskis, "Using the Probabilistic Model Checker PRISM to analyze H-OTBA Algorithm in Optical Burst Switching (OBS) Networks". Advances in Wireless Communications (RTUWO). Telecommunications Institute, Riga, Latvia, 2015. https://doi.org/10.1109/RTUWO.2015.7365736

V. Vokkarane, et al., "Threshold-based burst assembly policies for QoS support in optical burst-switched networks". Center for Advanced Telecommunications Systems and Services. The University of Texas at Dallas. In Proceedings of the Optical Networking and Communications (OptiComn '02), Boston, USA, vol. 4874, pp. 125-136, July 2002. https://doi.org/10.1117/12.475291

Z. Zhang, et al., "Novel threshold-based burst assembly scheme for QoS support in optical burst switched WDM networks". Shanghai Jiaotong University, China. In Performance and Control of Nest-Generation Communications Networks, pp. 250-256, August 2003. https://doi.org/10.1117/12.509318

Z. Zhang, et al., "A new burst assembly and dropping scheme for service differentiation in optical burst switched networks". In Proceedings of the Asia-Pacific Optical and Wireless Communications: Optical Transmission. Switching and Subsystems (APOC '03). Shanghai Jiaotong Univ., Wuhan, China, pp. 236-245, May 2004. https://doi.org/10.1117/12.522002

V. Kavitha, y V. Palanisamy, "NEW BURST ASSEMBLY AND SCHEDULING TECHNIQUE FOR OPTICAL BURST SWITCHING NETWORKS". Journal of Computer Science, Department of Electronics and Communication Engineering, 2013. https://doi.org/10.3844/jcssp.2013.1030.1040

V. Tavanam, et al., "BFCA-VF: Best Fit Channel Allocation and Void Filling by Burst Segmenting and Scheduling". IEEE International Conference on Recent Advances and Innovations in Engineering (ICRAIE-2014), India, May 2014. https://doi.org/10.1109/ICRAIE.2014.6909111

N. M. Garcia, "Architectures and Algorithms for IPv4/IPv6-Compliant Optical Burst Switching Networks". Thesis submitted to the University of Beira Interior in candidature for the Degree of Doctor of Philosophy in Computer Science and Engineering, Covilha, Portugal, 2008.

M. Duser, y P. Bayvel, "Performance of a Dynamically Wavelength-Routed Optical burst switched network". IEEE Photonics Technology Letters, vol. 14, no 2, pp. 239-241, February 2002. https://doi.org/10.1109/68.980534

I. Karamitsos y Ch. Bowerman, "A Resource Reservation Protocol with Linear Traffic Prediction for OBS Networks". Research Article, Hindawi, Hindawi Publishing Corporation, Advances in Optical Technologies, Department of Computing, School of Engineering, University of Sunderland, vol. 2013, pp. 132-148, 2013. https://doi.org/10.1155/2013/425372

K. Dolzer, y C. Gauger, "On Burst Assembly in Optical Burst Switching Networks -A Performance Evaluation of Just-Enough-Time". 17th International Teletraffic Congress, University of Stuttgart, Institute of Communication Networks and Computer Engineering, Salvador, Brazil, vol. 4, pp. 149-160, September 2001. https://doi.org/10.1016/S1388-3437(01)80118-9

F. Loukdache, et al., "GHL Algorithm Extension Based on a New Technique of Reducing Congestion in OBS Networks". International Journal of Software Engineering and Its Applications, vol. 9, pp. 189-196, no 9, 2015. https://doi.org/10.14257/ijseia.2015.9.9.16

H-L. To, et al., "A burst loss probability model with impatient customer feature for optical burst switching networks". International Journal of Communication Systems, July, vol. 28, no. 11, pp.1729-1740, 2014. https://doi.org/10.1002/dac.2772

H. Momaya, et al., "Optical Burst Switching (OBS): Contention Resolution Technique". IJIRST -International Journal for Innovative Research in Science & Technology, vol. 2, February 2016.

S. Choudhury, et al., "An integrated routing and offset-time adaptation scheme for OBS network". Department of Information Technology, National Institute of Technology Durgapur. Goa, India, January 2015. https://doi.org/10.1145/2684464.2684488

M. Kozak, et al., "On the efficiency of stream line effect for contention avoidance in optical burst switching networks". Department of Telecommunication Engineering Faculty of Electrical Engineering, Czech Technical University in Prague. Optical Switching and Networking, vol. 18, pp. 35-50, March 2015. https://doi.org/10.1016/j.osn.2015.03.002

Cómo citar

APA

Jiménez-Pinzón, N. A., y López-Perafán, J. G. (2019). Clasificación de parámetros y criterios al ensamblar la ráfaga. Visión electrónica, 2(2), 263–273. https://doi.org/10.14483/22484728.18448

ACM

[1]
Jiménez-Pinzón, N.A. y López-Perafán, J.G. 2019. Clasificación de parámetros y criterios al ensamblar la ráfaga. Visión electrónica. 2, 2 (dic. 2019), 263–273. DOI:https://doi.org/10.14483/22484728.18448.

ACS

(1)
Jiménez-Pinzón, N. A.; López-Perafán, J. G. Clasificación de parámetros y criterios al ensamblar la ráfaga. Vis. Electron. 2019, 2, 263-273.

ABNT

JIMÉNEZ-PINZÓN, Neil Andrés; LÓPEZ-PERAFÁN, José Giovanny. Clasificación de parámetros y criterios al ensamblar la ráfaga. Visión electrónica, [S. l.], v. 2, n. 2, p. 263–273, 2019. DOI: 10.14483/22484728.18448. Disponível em: https://revistas.udistrital.edu.co/index.php/visele/article/view/18448. Acesso em: 18 abr. 2024.

Chicago

Jiménez-Pinzón, Neil Andrés, y José Giovanny López-Perafán. 2019. «Clasificación de parámetros y criterios al ensamblar la ráfaga». Visión electrónica 2 (2):263-73. https://doi.org/10.14483/22484728.18448.

Harvard

Jiménez-Pinzón, N. A. y López-Perafán, J. G. (2019) «Clasificación de parámetros y criterios al ensamblar la ráfaga», Visión electrónica, 2(2), pp. 263–273. doi: 10.14483/22484728.18448.

IEEE

[1]
N. A. Jiménez-Pinzón y J. G. López-Perafán, «Clasificación de parámetros y criterios al ensamblar la ráfaga», Vis. Electron., vol. 2, n.º 2, pp. 263–273, dic. 2019.

MLA

Jiménez-Pinzón, Neil Andrés, y José Giovanny López-Perafán. «Clasificación de parámetros y criterios al ensamblar la ráfaga». Visión electrónica, vol. 2, n.º 2, diciembre de 2019, pp. 263-7, doi:10.14483/22484728.18448.

Turabian

Jiménez-Pinzón, Neil Andrés, y José Giovanny López-Perafán. «Clasificación de parámetros y criterios al ensamblar la ráfaga». Visión electrónica 2, no. 2 (diciembre 6, 2019): 263–273. Accedido abril 18, 2024. https://revistas.udistrital.edu.co/index.php/visele/article/view/18448.

Vancouver

1.
Jiménez-Pinzón NA, López-Perafán JG. Clasificación de parámetros y criterios al ensamblar la ráfaga. Vis. Electron. [Internet]. 6 de diciembre de 2019 [citado 18 de abril de 2024];2(2):263-7. Disponible en: https://revistas.udistrital.edu.co/index.php/visele/article/view/18448

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