Sistem bandwidth WiFi jaringan ad-hoc menggunakan metode class based queue

Ad-hoc network WiFi bandwidth system using class based queue method

Authors

  • Teddi Hariyanto Politeknik Negeri Bandung
  • Maya Rahayu Politeknik Negeri Bandung

DOI:

https://doi.org/10.35313/jitel.v1.i1.2021.17-24

Keywords:

MANET, bandwidth management tool, CBQ

Abstract

Mobile ad-hoc network (MANET) merupakan jaringan ad-hoc yang dibangun oleh perangkat-perangkat bergerak, salah satunya adalah laptop. Jaringan tersebut merupakan jaringan nirkabel yang bersifat infrastructureless. Jaringan ini mampu mengkomunikasikan node secara peer-to-peer tanpa basic service set (BSS). Ketidakberadaan BSS pada jaringan ini menyulitkan para pengguna dalam mengalokasikan uplink bandwidth bagi node/link kritikal dan mencegah terjadinya flooding pada jaringan. Penelitian ini bertujuan untuk merancang sebuah bandwidth management tool berupa program yang diimplementasikan untuk mengalokasikan uplink bandwidth pada jaringan ad-hoc. Program yang dirancang menggunakan metode CBQ untuk classifying dan scheduling paket. Dari hasil pengujian, sistem bandwidth WiFi jaringan ad-hoc menggunakan metode CBQ ini memiliki kinerja throughput 513,24 Kbps yang diperoleh melalui perhitungan average rounded trip time.

References

Y. Zheng, T. Shi, X. Xu, H. Yuan, and T. Yao, “Research on WLAN planning problem based on optimization models and multi-agent algorithm,” 2017 IEEE Int. Conf. Cybern. Intell. Syst. CIS 2017 IEEE Conf. Robot. Autom. Mechatronics, RAM 2017 - Proc., vol. 2018-January, pp. 249–254.

H. M. T. Al-Hilfi, B. A. Salih, and I. Marghescu, “Design of secured WLAN by using ‘packet filtering firewall,’” Proc. 2017 Int. Conf. Wirel. Commun. Signal Process. Networking, WiSPNET 2017, vol. 2018-January, pp. 1857–1862, 2018.

R. Takahashi, S. Ishida, A. Fukuda, T. Murakami, and S. Otsuki, “DNN-based Outdoor NLOS Human Detection Using IEEE 802.11ac WLAN Signal,” Proc. IEEE Sensors, vol. 2019-October, pp. 1–4, 2019.

W. S. Chen, G. Q. Lin, and W. H. Hsu, “WLAN MIMO antennas with a GPS antenna for smart watch applications,” 2017 Int. Work. Electromagn. Appl. Student Innov. Compet. iWEM 2017, no. c, pp. 89–90, 2017.

G. Soni and C. Verma, “Performance investigation of the WLAN link using QAM and QPSK based on vector signal transceiver 5644R,” Proc. - 7th Int. Conf. Commun. Syst. Netw. Technol. CSNT 2017, pp. 34–37, 2018.

M. A. H. Networks, “Location-based Flooding Area Restriction for,” 2019 20th Asia-Pacific Netw. Oper. Manag. Symp., pp. 1–4, 2019.

N. Rathod and N. Dongre, “MANET routing protocol performance for video streaming,” 2017 Int. Conf. Nascent Technol. Eng. ICNTE 2017 - Proc., 2017.

W. Wang, B. Yang, X. Wang, Y. She, and S. Shen, “Capacity of 3D MANETs under packet redundancy and receiver probing,” Proc. - 2018 Int. Conf. Netw. Netw. Appl. NaNA 2018, pp. 164–168, 2019.

B. S. Kim, D. G. Majengo, K. Il Kim, B. S. Roh, and J. H. Ham, “Dynamic Timer Based on Expected Link Duration in Mobile Ad-hoc Networks,” Proc. - 2019 IEEE 16th Int. Conf. Mob. Ad-hoc Smart Syst. Work. MASSW 2019, pp. 158–159, 2019.

K. Muralidhar and K. Madhavi, “An investigation into the operational limitations of mobile ad-hoc networks,” Proc. 2017 Int. Conf. Wirel. Commun. Signal Process. Networking, WiSPNET 2017, vol. 2018-January, pp. 1373–1376.

J. H. Lee, M. S. Park, and S. C. Shah, “Wi-Fi direct based mobile ad-hoc network,” 2nd Int. Conf. Comput. Commun. Syst. ICCCS 2017, pp. 116–120, 2017.

S. H. Omprakash and M. K. Suthar, “Mitigation Technique for Black hole Attack in Mobile Ad-hoc Network,” 2020 11th Int. Conf. Comput. Commun. Netw. Technol. ICCCNT 2020, 2020.

R. Chaithra and A. S. Poornima, “A Mobile AD-HOC Cloud for Automated Video Surveillance System with Message Alert,” Proc. 2nd Int. Conf. Trends Electron. Informatics, ICOEI 2018, pp. 1171–1175, 2018.

B. Cui and Y. Yang, “Hotspot-based Resource Sharing System for Mobile Ad-hoc Networks,” Proc. 2018 IEEE 8th Int. Conf. Electron. Inf. Emerg. Commun. ICEIEC 2018, pp. 146–149, 2018.

M. El Amine Fekair, A. Lakas, and A. Korichi, “CBQoS-Vanet: Cluster-based artificial bee colony algorithm for QoS routing protocol in VANET,” 2016 Int. Conf. Sel. Top. Mob. Wirel. Networking, MoWNeT 2016, pp. 0–7, 2016.

D. W. Sudiharto, F. A. Yulianto, and A. N. Arista, “Comparative analysis of voice over internet protocol (VoIP) quality on priority queue (PQ) and class-based queue (CBQ) management system using link-sharing mechanism setting,” 2015 3rd Int. Conf. Inf. Commun. Technol. ICoICT 2015, pp. 419–424, 2015.

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Published

2021-03-11

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Articles