Implementation and Evaluation of Opportunistic Routing Protocols for Wireless and New Generation Communication Networks
Tóm tắt
Current wireless networks are based on unicast routing protocol derived from wired networks. The purpose of this paper is to implement and to evaluate opportunistic routing protocols in new generation’s wireless network. This is a comparative study between two opportunistic protocols, which are extremely opportunistic routing protocol and simple opportunistic adaptive routing protocol. The main goal of this survey is to show the benefits required by using opportunistic approach to optimize the new generation’s wireless networks operations and implemented the most used protocols under MATLAB framework.
Tài liệu tham khảo
Patil, S., & Chandre, P. (2016). Trust based energy efficient relay selection in multihope wireless network. International Journal of Science and Research, 5(1), 345–348.
Lin, Y., Chen, Z., Wu, J., & Wang, L. (2018). An opportunistic network routing algorithm based on cosine similarity of data packets between nodes. MDPI Journal Algorithms. https://doi.org/10.3390/a11080119.
Sumathy, S., & Saravanan, R. (2011). ETX for extremely opportunistic routing to improve the performance of hybrid wireless networks. International Journal of Ad Hoc, Sensor & Ubiquitous Computing (IJASUC).
Hsu, C., Liu, H., & Seah, W. K. G. (2011). Opportunistic routing—A review and the challenges ahead. Computer Networks, 55(15), 3592–3603.
Poonkuzhali, R., Sanavullah, M. Y., Sabari, A., & Dhivyaa, T. (2015). A survey on opportunistic routing in mobile ad hoc networks. International Journal of Computer and Information Engineering, 9(6), 1628–1631.
Kafaie, S., Member, S., Chen, Y., Dobre, O. A., & Ahmed, M. H. (2018). Joint inter-flow network coding and opportunistic routing in multi-hop wireless mesh networks: A comprehensive survey. IEEE Communications Surveys & Tutorials, 1(99), 1014–1035.
Wu, J., Lu, M., & Li, F. (2008). Utility-based opportunistic routing in multi-hop wireless networks. Mobile Computing.
Javidi, T., & Van Buhler, E. (2016). Opportunistic routing in wireless (Vol. 11). Mike Casey: Now Publishers.
Boukerche, A., & Darehshoorzadeh, A. (2014). Opportunistic routing in wireless networks: Models, algorithms, and classifications. ACM Computing Surveys, 47(2), Article 22.
Kawadia, V., Zhang, Y., & Gupta, B. (2003). System services for ad-hoc routing: Architecture, implementation and experiences. In MobiSys ’03: proceedings of the 1st international conference on mobile systems, applications and services.
Correa, U., Montez, C., Mazzola, V., & Dantas, M. A. R. (2006). Frad-hoc: A framework to routing ad-hoc networks. In K. Al Agha (Ed.), IFIP international federation for information processing (Vol. 212, pp. 71–82). Boston: Springer.
Jadhav, P., & Satao, R. (2016). A survey on opportunistic routing protocols for wireless sensor networks. Procedia Computer Science, 79, 603–609.
Kabaou, M. O. (2011). Radio resources management in new generation networks: Application to the WiMAX and LTE standards. PhD, National School of Engineering in Gabes (ENIG-MACS).
Hamouda, H., Kabaou, M. O., & Bouhlel, M. S. (2017). QoE-aware multi-steps opportunistic scheduling scheme for streaming application over OFDMA wireless systems. In The 31st IEEE international conference on advanced information networking and applications (IEEE AINA-2017) (pp. 27–29).
Hamouda, H., Kabaou, M. O., & Bouhlel, M. S. (2017). A cross-layer downlink scheduling scheme for balancing QoS in IEEE 802.16 broadband wireless access systems. In The IEEE 86th vehicular technology conference: VTC2017-Fall (pp. 24–27). Toronto, Canada.
Hamouda, H., Kabaou, M. O., & Bouhlel, M. S. (2017). A downlink resources allocation scheme for multimedia applications in OFDMA wireless systems. In: The 31st IEEE international conference on advanced information networking and applications (IEEE AINA-2017) (pp. 27–29). Taipei, Taiwan.
Rozner, E., Seshadri, J., Ashok Mehta, Y., & Qiu, L. (2006). SOAR: Simple opportunistic adaptive routing protocol for wireless mesh networks. IEEE Transactions on Mobile Computing, 8(12), 1622–1635.
Heissenbutel, T. M., Braun, T., & Walchli, M. (2004). BLR: Beacon-less routing algorithm for mobile ad hoc networks. Computer Communication Journal, 27, 1076–1086.
Biswas, S., & Morris, R. (2005). ExOR: Opportunistic routing in multi-hop wireless networks. In Proceedings of ACM SIGCOMM. Philadelphia, Pennsylvania.
Chachulski, S. (2007). Trading structure for randomness in wireless opportunistic routing. In Proceeding of ACM SIGCOMM.
Katti, S., & Katabi, D. (2008). Symbol-level network coding for wireless mesh networks. In Proceeding of ACM SIGCOMM. Seattle, WA, USA.
Rozner, E., & Seshadri, J. (2006). Simple opportunistic routing for wireless mesh networks. In Wireless mesh networks (pp. 48–54). Reston, VA, USA.
Keranen, A., Ott, J., & Karkkainen, T. (2009). The ONE simulator for DTN protocol evaluation. In SIMUTools ’09: Proceedings of the 2nd international conference on simulation tools and techniques. Rome, Italy.
Ariza-Quintana, A., Casilari, E., & Trivio Cabrera, A. (2008). Implementation of MANET routing protocols on OMNeT++. In SIMUTools ’08: Proceedings of the 1st international conference on simulation tools and techniques.
Velmurugan, N. S. (2015). EEEOR: Duty cycle using energy effcient extremely opportunistic routing protocol in MANET. International Journal of Science, Engineering and Technology Reaserch, 4(6), 2221–2226.
Gazoni, N., Angelakis, V., Siris, V. A., & Raffaele, B. (2010). A framework for opportunistic routing in multi-hop wireless networks. In PE-WASUN ’10: Proceedings of the 7th ACM workshop on performance evaluation of wireless ad hoc, sensor, and ubiquitous networks.
Patel, S. S., & Mohanpriya, M. (2016). Performance estimation on opportunistic routing protocol based on reliability analysis. International Journal on Computer science and Engineering, 8(7), 236–240.
Sarrar, N. (2009). Implementation and evaluation of an opportunistic mesh routing protocol. PhD: Technische Universitat Berlin Fakultat IV, Deutsche Telekom Laboratories, INET, June 2009.
Fathima, M., Ahmad, K., & Fathima, A. (2017). Mobility models and routing protocols in opportunistic networks: A survey. International Journal of Advanced Reaserch in Computer Science, 8(5), 354–371.
De Couto, D. S. J., Aguayo, D., Bick, J., & Morris, R. (2003). A high throughput path metric for multi-hop wireless routing. Wireless Networks, 11, 419–434.
Poonkuzhali, R., Sanavullah, M. Y., & Gurupriya, R. (2014). A comparative study of novel opportunistic routing protocols in mobile ad hoc networks. International Journal of Computer and Information Engineering, 8(8), 1529–1532.
Sharma, M., Singh, Y., & Kumar, N. (2014). Opportunistic routing in wireless sensor networks: A comparative analysis. Journal of Basic and Applied Engineering Research, 1, 94–98.
Biswas, S., & Moris, R. (2005). ExOR: Opportunistic multi-hop routing for wireless networks. M.I.T. Computer Science and Artificial Intelligence Laboratory.
Rozner, E., Seshadri, J., Mehta, Y., & Qiu, L. (2006). Simple opportunistic routing protocol for wireless mesh networks. University of Texas, Austin.
Rozner, E., Seshadri, J., Ashok Mehta, Y., & Qiu, L. (2009). SOAR: Simple opportunistic adaptive routing protocol for wireless mesh networks. IEEE Transactions on Mobile Computing, 8(12), 1622–1635.
Mulla, S., Sanafarin, S., Juber, A., & Hunnargi, N. (2015). Overview of various opportunistic routing protocols. International Journal of Electronics and Communication, 3(12), 1–5.
Song, L., & Kotz, D. F. (2007). Evaluating opportunistic routing protocols with large realistic contact traces. In Proceedings of the second workshop on challenged networks, CHANTS 2007 (pp. 35–42), Montréal, Québec, Canada.
Rozner, E., & Seshadri, J. (2006). Simple opportunistic routing for wireless mesh networks. Wireless mesh networks (pp. 48–54). Reston, VA, USA.
Zubow, A., & Kurth, M. (2007). Multi-channel opportunistic routing. In European wireless.
Zhao, Z., & Braun, T. (2011). OMNeT++ based opportunistic routing protocols simulation: A framework. Institute of Computer Science Applied Mathematics, University of Bern Neubruckstrasse 10, 3012 Bern, Switzerland.