Lumpability for Uncertain Continuous-Time Markov Chains

Luca Cardelli, Radu Grosu, Kim Guldstrand Larsen, Mirco Tribastone, Max Tschaikowski, Andrea Vandin

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2 Citationer (Scopus)

Abstract

The assumption of perfect knowledge of rate parameters in continuous-time Markov chains (CTMCs) is undermined when confronted with reality, where they may be uncertain due to lack of information or because of measurement noise. In this paper we consider uncertain CTMCs, where rates are assumed to vary non-deterministically with time from bounded continuous intervals. This leads to a semantics which associates each state with the reachable set of its probability under all possible choices of the uncertain rates. We develop a notion of lumpability which identifies a partition of states where each block preserves the reachable set of the sum of its probabilities, essentially lifting the well-known CTMC ordinary lumpability to the uncertain setting. We proceed with this analogy with two further contributions: a logical characterization of uncertain CTMC lumping in terms of continuous stochastic logic; and a polynomial time and space algorithm for the minimization of uncertain CTMCs by partition refinement, using the CTMC lumping algorithm as an inner step. As a case study, we show that the minimizations in a substantial number of CTMC models reported in the literature are robust with respect to uncertainties around their original, fixed, rate values.
OriginalsprogEngelsk
TitelQuantitative Evaluation of Systems : 18th International Conference, QEST 2021, Paris, France, August 23–27, 2021, Proceedings
ForlagSpringer
Publikationsdato2021
Sider391-409
ISBN (Trykt)978-3-030-85171-2
ISBN (Elektronisk)978-3-030-85172-9
DOI
StatusUdgivet - 2021
BegivenhedInternational Conference on Quantitative Evaluation of Systems - Paris, Frankrig
Varighed: 23 aug. 202127 aug. 2021

Konference

KonferenceInternational Conference on Quantitative Evaluation of Systems
Land/OmrådeFrankrig
ByParis
Periode23/08/202127/08/2021
NavnLecture Notes in Computer Science
Vol/bind12846
ISSN0302-9743

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