Resources Efficient Dynamic Clustering Algorithm for Flying Ad-Hoc Network

Main Article Content

Deepak Kumar
Sonia

Abstract

Unmanned Aerial Vehicles, often known as UAVs, are connected in the form of a Flying Ad-hoc Network, or FANET, and placed to use in a variety of applications to carry out efficient remote monitoring. Their great mobility has an adverse effect on their energy consumption, which in turn has a detrimental effect on the network's stability and the effectiveness of communication. To manage the very dynamic flying behavior of UAVs and to keep the network stable, novel clustering algorithms have been implemented. In this context, a novel clustering technique is developed to meet the rapid mobility of UAVs and to offer safe inter-UAV distance, reliable communication, and an extended network lifespan. It also provides a detailed analysis of the similarities and distinctions between AODV, AOMDV, DSDV, and DumbAgent.The performance of these protocols is analyzed using the NS-2 simulator. The simulation results are shown in our study with AODV, AOMDV, DSDV, and DumbAgent. The results of the simulation make it abundantly evident that the AODV routing protocol outperforms the other routing protocols DSDV, AOMDV, and DumbAgent in terms of the number of packets lost, the amount of throughput achieved, the amount of routing overhead generated, and the amount of delay.

Article Details

How to Cite
Kumar, D. ., & Sonia, S. (2023). Resources Efficient Dynamic Clustering Algorithm for Flying Ad-Hoc Network. International Journal on Recent and Innovation Trends in Computing and Communication, 11(2s), 106–117. https://doi.org/10.17762/ijritcc.v11i2s.6034
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Articles

References

Nazib, Rezoan Ahmed, and SangmanMoh. "Routing protocols for unmanned aerial vehicle-aided vehicular ad hoc networks: A survey." IEEE Access 8 (2020): 77535-77560.

Beiranvand, Zahra, Ahmad Patooghy, and Mahdi Fazeli. "I-LEACH: An efficient routing algorithm to improve performance & to reduce energy consumption in Wireless Sensor Networks." In The 5th Conference on Information and Knowledge Technology, pp. 13-18. IEEE, 2013.

Daanoune, Ikram, Baghdad Abdennaceur, and AbdelhakimBallouk. "A comprehensive survey on LEACH-based clustering routing protocols in Wireless Sensor Networks." Ad Hoc Networks 114 (2021): 102409.

Badotra, Sumit, and Surya Narayan Panda. "SNORT based early DDoS detection system using Opendaylight and open networking operating system in software-defined networking." Cluster Computing 24, no. 1 (2021): 501-513.

Bekmezci, Ilker, OzgurKoraySahingoz, and ?amilTemel. "Flying ad-hoc networks (FANETs): A survey." Ad Hoc Networks 11, no. 3 (2013): 1254-1270.

Kaleem, Zeeshan, and Mubashir Husain Rehmani. "Amateur drone monitoring: State-of-the-art architectures, key enabling technologies, and future research directions." IEEE Wireless Communications 25, no. 2 (2018): 150-159.

Kerrache, ChakerAbdelaziz, EzedinBarka, NasreddineLagraa, and AbderrahmaneLakas. "Reputation-aware energy-efficient solution for FANET monitoring." In 2017 10th IFIP Wireless and Mobile Networking Conference (WMNC), pp. 1-6. IEEE, 2017.

Zafar, Wajiya, and Bilal Muhammad Khan. "Flying ad-hoc networks: Technological and social implications." IEEE Technology and Society Magazine 35, no. 2 (2016): 67-74.

Yassein, MuneerBani, and NourAlhuda. "Flying ad-hoc networks: Routing protocols, mobility models, issues." International Journal of Advanced Computer Science and Applications 7, no. 6 (2016).

Park, V., Corson, S.: Temporarily-Ordered Routing Algorithm (TORA) Version 1. Internet draft, IETFMANETworking group. http://tools.ietf.org/html/draft-ietf-manet-tora-spec-04. Accessed 3 Aug 2013

Zang, Chunhua, and ShouhongZang. "Mobility prediction clustering algorithm for UAV networking." In 2011 IEEE Globecom Workshops (GC Wkshps), pp. 1158-1161. IEEE, 2011.

Zhao, Chengkun, Qian Wu, Deyu Lin, Zhiqiang Zhang, Yujie Zhang, Linghe Kong, and Yong Liang Guan. "An energy-balanced unequal clustering approach for circular wireless sensor networks." Ad Hoc Networks 132 (2022): 102872.

Tadkal, Arunkumar M., and Sujatha V. Mallapur. "Red deer optimization algorithm inspired clustering-based routing protocol for reliable data dissemination in FANETs." Materials Today: Proceedings 60 (2022): 1882-1889.

Bharany, Salil, Sandeep Sharma, SumitBadotra, Osamah Ibrahim Khalaf, YouseefAlotaibi, SalehAlghamdi, and FawazAlassery. "Energy-efficient clustering scheme for flying ad-hoc networks using an optimized LEACH protocol." Energies 14, no. 19 (2021): 6016.

Da Costa, Luis Antonio LF, Rafael Kunst, and Edison Pignaton de Freitas. "Q-FANET: Improved Q-learning based routing protocol for FANETs." Computer Networks 198 (2021): 108379.

Sang, Qianqian, Honghai Wu, Ling Xing, Huahong Ma, and Ping Xie. "An energy-efficient opportunistic routing protocol based on trajectory prediction for FANETs." IEEE Access 8 (2020): 192009-192020.

Cheriguene, Youssra, SoumiaDjellikh, Fatima ZohraBousbaa, NasreddineLagraa, AbderrahmaneLakas, ChakerAbdelazizKerrache, and Abdou El KarimTahari. "SEMRP: An energy-efficient multicast routing protocol for UAV swarms." In 2020 IEEE/ACM 24th International Symposium on Distributed Simulation and Real-Time Applications (DS-RT), pp. 1-8. IEEE, 2020.

Mowla, Nishat I., Nguyen H. Tran, InshilDoh, and KijoonChae. "Federated learning-based cognitive detection of jamming attack in flying ad-hoc network." IEEE Access 8 (2019): 4338-4350

Yang, Hua, and Zhiyong Liu. "An optimization routing protocol for FANETs." EURASIP Journal on Wireless Communications and Networking 2019, no. 1 (2019): 1-8.

Zheng, Zhigao, Arun Kumar Sangaiah, and Tao Wang. "Adaptive communication protocols in flying ad hoc network." IEEE Communications Magazine 56, no. 1 (2018): 136-142

Laroiya, Namita, and SushilLekhi. "Energy efficient routing protocols in vanets." Advances in Computational Sciences and Technology 10, no. 5 (2017): 1371-1390.

Beckett, Claire, Lennart Eriksson, Erik Johansson, and ConnyWikström. "Multivariate data analysis (MVDA)." Pharmaceutical quality by design: A practical approach (2018): 201-225.

Nerurkar, Pranav, ArchanaShirke, MadhavChandane, and Sunil Bhirud. "Empirical analysis of data clustering algorithms." Procedia Computer Science 125 (2018): 770-779.

Shi, Nanxiang, and XilingLuo. "A novel cluster-based location-aided routing protocol for UAV fleet networks." International Journal of Digital Content Technology and its Applications 6, no. 18 (2012): 376.

Pandya, G., Basics of unmanned aerial vehicles, Notion Press, (2021) India.

Wang, Gai-Ge, Amir H. Gandomi, Amir H. Alavi, and Dunwei Gong. "A comprehensive review of krill herd algorithm: variants, hybrids, and applications." Artificial Intelligence Review 51, no. 1 (2019): 119-148.