Presentation 2024-01-19
Study on appropriate combination of MPTCP for Congestion Control and Scheduler for WebQoE Improvement
Takeshi Kato, Yoshihiro Ito,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) This paper studies the optimal combination of congestion control and scheduler that suppresses the fluctuations of QoS in MPTCP to improve the Quality of Experience in Web services(WebQoE) by experiment. The authors target delay-based congestion control and scheduler and throughput-based ones; they consider MPTCP throughput and Round Trip Time (RTT) as QoS parameters. The paper compares the results of the QoS and its fluctuation of a Web service for all the combinations of the congestion controls and schedulers by experiments with actual devices. The experimental results show that when the communication quality of the paths is equal, the combination of congestion control and the scheduler that suppresses the fluctuation of the RTT and the scheduler is optimal. On the other hand, when the communication quality of the paths is different, the combination of congestion control that suppresses the RTT fluctuation and a scheduler that suppresses the throughput fluctuation is optimal.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) MPTCP / Congestion Control / Packet Scheduler / QoS
Paper # IN2023-62
Date of Issue 2024-01-11 (IN)

Conference Information
Committee IN
Conference Date 2024/1/18(2days)
Place (in Japanese) (See Japanese page)
Place (in English)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair Kunio Hato(NTT)
Vice Chair Tsutomu Murase(Nagoya Univ.)
Secretary Tsutomu Murase(NTT)
Assistant

Paper Information
Registration To Technical Committee on Information Networks
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Study on appropriate combination of MPTCP for Congestion Control and Scheduler for WebQoE Improvement
Sub Title (in English)
Keyword(1) MPTCP
Keyword(2) Congestion Control
Keyword(3) Packet Scheduler
Keyword(4) QoS
1st Author's Name Takeshi Kato
1st Author's Affiliation Nagoya Institute of Technology(NIT)
2nd Author's Name Yoshihiro Ito
2nd Author's Affiliation Nagoya Institute of Technology(NIT)
Date 2024-01-19
Paper # IN2023-62
Volume (vol) vol.123
Number (no) IN-342
Page pp.pp.75-78(IN),
#Pages 4
Date of Issue 2024-01-11 (IN)