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Machine Learning-Based Auto-Scaler for Video Conferencing Systems

Title
Machine Learning-Based Auto-Scaler for Video Conferencing Systems
Authors
Gabriela, P.Hong, J.W.-K.Tu, N.V.Lee, D.
Date Issued
2021-06
Publisher
Institute of Electrical and Electronics Engineers Inc.
Abstract
Video conferencing systems have been developed for a long time. However, due to COVID-19, people came to realize the importance of such systems that their widespread usage increased drastically. With the growing number of users of video conferencing systems, it is essential to be able to manage the system better. Even though Network Function Virtualization (NFV) has helped in handling the dynamic nature of video conferencing systems by providing the ability to deploy and/or remove virtual instances, being able to manage the virtual instances efficiently and optimally is a necessity. One of the main problems to be solved to achieve this goal is the auto-scaling problem. In this problem, an auto-scaling agent has to decide whether the number of a virtual instance type has to be increased, decreased, or maintained. In this paper, we designed and experimented a new auto-scaling algorithm by using Reinforcement Learning (RL), specifically the Deep Q-Network (DQN) algorithm. The experiment was done in both emulated and simulated environments. We then evaluated our proposed approach by comparing it with a threshold-based auto-scaler, the baseline algorithm. The results showed that the DQN-based auto-scaler performed better than the baseline algorithm, using fewer virtual instances with a better quality of service overall, as well as being more robust to shifting data distribution. Overall, the applications of DQN on auto-scaling algorithms for cost-effective and high-performance video conferencing systems are promising. ? 2021 IEEE.
URI
https://oasis.postech.ac.kr/handle/2014.oak/109466
ISSN
0000-0000
Article Type
Conference
Citation
IEEE 7th International Conference on Network Softwarization (NetSoft) - Accelerating Network Softwarization in the Cognitive Age, page. 142 - 150, 2021-06
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홍원기HONG, WON KI
Dept of Computer Science & Enginrg
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