Using Explicit (Host-to-Network) Flow Measurements for Network Tomography
Abstract
QUIC hides implicit protocol semantics commonly used for flow performance measurements with TCP. Addressing this challenge, Explicit (Host-to-Network) Flow Measurement (EFM) schemes explicitly expose measurable signals: QUIC's spin bit enables latency measurements, and RFC 9506 defines mechanisms for packet loss. While the measurement accuracy of these schemes has already been studied, their utility for network management is unexplored. In this work, we demonstrate that EFM can enable network tomography (NT), which traditionally uses active measurements. Comparing EFM-based to traditional NT through extensive network simulations, we find that raw EFM output challenges NT due to fluctuations induced by links outside the monitored network. However, path segmentation capabilities of the spin and Q bits can remedy these issues. Overall, our findings highlight the general potential of EFM for network management.
Authors 3
-
Ike Kunze Aachen
Affiliation as printed
RWTH Aachen University, Aachen, Germany
-
Constantin Sander Aachen
Affiliation as printed
RWTH Aachen University, Aachen, Germany
-
Niklas Rieken Aachen
Affiliation as printed
RWTH Aachen University, Aachen, Germany
Cited by 0 stored of 0
No patents citing this paper on Lens.org (checked 2026-10-06).
References 36
-
W2545990795details pending0citations
-
W2295569936details pending0citations
-
W2561417650details pending0citations
-
W2887543629details pending0citations
-
W2903488201details pending0citations
-
W2961312204details pending0citations
-
W3186508275details pending0citations
-
W4243349849details pending0citations
-
W4290990900details pending0citations
-
W4388039160details pending0citations
-
W4253269957details pending0citations
-
W2097897435details pending0citations
-
W3001976453details pending0citations
-
W3211708711details pending0citations
-
W2259286596details pending0citations
-
W170020907details pending0citations
-
W812600222details pending0citations