Learning Service Slowdown using Observational Data

Fuente: arXiv
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Main Authors: Kuang, Xu, Mendelson, Gal
Format: Preprint
Published: 2024
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author Kuang, Xu
Mendelson, Gal
author_facet Kuang, Xu
Mendelson, Gal
contents Being able to identify service slowdowns is crucial to many operational problems. We study how to use observational congestion data to learn service slowdown in a multi-server system that uses adaptive congestion control mechanisms. We show that a commonly used summary statistic that relies on the marginal congestion measured at individual servers can be highly inaccurate in the presence of adaptive congestion control. We propose a new statistic based on potential routing actions, and show it provides a much more robust signal for server slowdown in these settings. Unlike the marginal statistic, potential action aims to detect changes in the routing actions, and is able to uncover slowdowns even when they do not reflect in marginal congestion. Our results highlight the complexity in performing observational statistical analysis for service systems in the presence of adaptive congestion control. They also suggest that practitioners may want to combine multiple, orthogonal statistics to achieve reliable slowdown detection.
format Preprint
id arxiv_https___arxiv_org_abs_2401_07305
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Learning Service Slowdown using Observational Data
Kuang, Xu
Mendelson, Gal
Physics and Society
Systems and Control
Probability
Being able to identify service slowdowns is crucial to many operational problems. We study how to use observational congestion data to learn service slowdown in a multi-server system that uses adaptive congestion control mechanisms. We show that a commonly used summary statistic that relies on the marginal congestion measured at individual servers can be highly inaccurate in the presence of adaptive congestion control. We propose a new statistic based on potential routing actions, and show it provides a much more robust signal for server slowdown in these settings. Unlike the marginal statistic, potential action aims to detect changes in the routing actions, and is able to uncover slowdowns even when they do not reflect in marginal congestion. Our results highlight the complexity in performing observational statistical analysis for service systems in the presence of adaptive congestion control. They also suggest that practitioners may want to combine multiple, orthogonal statistics to achieve reliable slowdown detection.
title Learning Service Slowdown using Observational Data
topic Physics and Society
Systems and Control
Probability
url https://arxiv.org/abs/2401.07305