Abstract
AbstractTo determine the optimal network architecture between the Basic Service Set, the Extended Service Set and the Independent Basic Service Set, this study established a new algorithm to assess Voice over Internet Protocol (VoIP) metrics of different IEEE 802.11 technologies. An important coefficient for each VoIP metric parameter has been invented to rank the different IEEE 802.11 standards and to identify the most efficient one for the VoIP application. The best overall network performance that offers good voice quality is ensured by determining the optimum network architecture and technology. Moreover, for the VoIP efficiency parameters, it meets the acceptance threshold values. This algorithm was implemented in different sizes of rooms ranging from 1 × 1 m to 10 × 10 m, and the number of nodes varied from 1 to 65. End to end delay, jitter, throughput and packet loss were the quality of service parameters used.
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Computer Science Applications
Reference30 articles.
1. Coronado, E., Villalón, J., & Garrido, A. (2020). Improvements to multimedia content delivery over IEEE 802.11 networks. In IEEE/IFIP network operations and management symposium. IEEE. https://doi.org/10.1109/NOMS47738.2020.9110424
2. Chang, C.-Y., Yen, H.-C., Lin, C.-C., & Deng, D.-J. (2015). QoS/QoE support for H. 264/AVC video stream in IEEE 802.11 ac WLANs. IEEE Systems Journal, 11(4), 2546–2555.
3. Odjidja, E., Kabanda, S., Agangiba, W., & Annan, R. (2018). Wireless enabled voice over internet protocol (VoIP) network application using asterisk PBX. EAI Endorsed Transactions on Internet of Things. https://doi.org/10.4108/eai.5-3-2019.156717
4. Seytnazarov, S., & Kim, Y. (2017). QoS-aware adaptive A-MPDU aggregation scheduler for voice traffic in aggregation-enabled high throughput WLANs. IEEE Transactions on Mobile Computing, 16(10), 2862–2875. https://doi.org/10.1109/TMC.2017.2672994
5. Abdelrahman, A. S., Saeed, R. A., & Alsaqour, R. A. (2016). Qos performance study of real-time transport protocol over VoIP. ARPN Journal of Engineering and Applied Sciences, 11(9), 5608–5615.
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