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May 31, 2026Proceedings of the ACM on Measurement and Analysis of Computing Systems2 citations

PEMI: Transparent Performance Enhancements for QUIC

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JZJie ZhangLZLei ZhangZWZ G Wang

Key Points

  • This research aims to enhance QUIC performance by utilizing transparent middleboxes for RTT measurement and packet loss inference.
  • Analyzed the QUIC standard and implementations to identify opportunities for middlebox assistance.
  • Developed PEMI to continuously measure RTT and infer lost packets without endpoint cooperation.
  • Utilized delay-based congestion control and feedback-based methods for fair retransmissions.
  • PEMI increases goodput of file transfers by up to 2.5× in Mininet experiments.
  • Reduced 90th percentile jitter of RTC frames by 20-75%.
  • Demonstrated significant overall performance improvement for QUIC connections.

Abstract

QUIC, as the transport layer of the next-generation Web stack (HTTP/3), provides native security and performance improvements over TCP-based stacks. However, since QUIC encrypts both payload and headers, in-network assistance like Performance-Enhancing Proxy (PEP) is unavailable for QUIC. To achieve the similar optimization as TCP, some works seek to collaborate endpoints and middleboxes to provide in-network assistance for QUIC. But involving both host and in-network devices increases the difficulty of deployment in the Internet. In this paper, by analyzing the QUIC standard, implementations, and the locality of application traffic, we identify opportunities for transparent middleboxes to measure RTT and infer packet loss for QUIC connections, despite the absence of plaintext ACK information. We then propose PEMI as a concrete system that continuously measures RTT and infers lost packets, enabling fast retransmissions for QUIC. PEMI enables performance enhancement for QUIC in a completely transparent manner, without requiring any explicit cooperation from the endpoints. To maintain fairness and reduce harmful fast retransmissions during congestion, PEMI employs a delay-based congestion control and utilizes feedback-based methods to enforce CWND. Extensive evaluation results, including Mininet and trace-driven dynamic experiments, show that PEMI can significantly improve the performance of QUIC. For example, in the Mininet experiments, PEMI increases the goodput of file transfers by up to 2.5×, and reduces the 90th percentile jitter of RTC frames by 20-75%.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a1bcf125783ba022b6fb41dhttps://doi.org/10.1145/3805646
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