Reducing the acknowledgement frequency in IETF QUIC

IF 0.9 4区 计算机科学 Q3 ENGINEERING, AEROSPACE International Journal of Satellite Communications and Networking Pub Date : 2022-10-24 DOI:10.1002/sat.1466
Ana Custura, Tom Jones, Raffaello Secchi, Gorry Fairhurst
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引用次数: 1

Abstract

Satellite networks usually use in-network methods (such as Performance Enhancing Proxies for TCP) to adapt the transport to the characteristics of the forward and return paths. QUIC is a transport protocol that prevents the use of in–network methods. This paper explores the use of the recently–standardised IETF QUIC protocol with a focus on the implications on performance when using different acknowledgement policies to reduce the number of packets and volume of bytes sent on the return path. Our analysis evaluates a set of ACK policies for three IETF QUIC implementations, examining performance over cellular, terrestrial and satellite networks. It shows that QUIC performance can be maintained even when sending fewer acknowledgements, and recommends a new QUIC acknowledgement policy that adapts QUIC's ACK Delay value based on the path RTT to ensure timely feedback. The resulting policy is shown to reduce the volume/rate of traffic sent on the return path and associated processing costs in endpoints, without sacrificing throughput.

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降低IETF QUIC中的确认频率
卫星网络通常使用网络内方法(如TCP的性能增强代理)来调整传输以适应前向和返回路径的特性。QUIC是一种防止使用网络内方法的传输协议。本文探讨了最近标准化的IETF QUIC协议的使用,重点是当使用不同的确认策略来减少在返回路径上发送的数据包数量和字节量时对性能的影响。我们的分析评估了三种IETF QUIC实现的一组ACK策略,检查了蜂窝、地面和卫星网络的性能。它表明,即使发送较少的确认,QUIC的性能也可以保持,并推荐了一种新的QUIC确认策略,该策略基于路径RTT调整QUIC的ACK Delay值,以确保及时反馈。由此产生的策略被证明可以在不牺牲吞吐量的情况下降低在返回路径上发送的流量的数量/速率以及端点中的相关处理成本。
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来源期刊
CiteScore
4.10
自引率
5.90%
发文量
31
审稿时长
>12 weeks
期刊介绍: The journal covers all aspects of the theory, practice and operation of satellite systems and networks. Papers must address some aspect of satellite systems or their applications. Topics covered include: -Satellite communication and broadcast systems- Satellite navigation and positioning systems- Satellite networks and networking- Hybrid systems- Equipment-earth stations/terminals, payloads, launchers and components- Description of new systems, operations and trials- Planning and operations- Performance analysis- Interoperability- Propagation and interference- Enabling technologies-coding/modulation/signal processing, etc.- Mobile/Broadcast/Navigation/fixed services- Service provision, marketing, economics and business aspects- Standards and regulation- Network protocols
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