Jip Spel

dblp:172/1443 · DBLP profile ↗
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5ranked-venue papers
2as first author
3since 2021 · last 2025
0000-0002-9113-2791ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Software engineering, systems software and programming languages · 5 · 2 first-author · 3 since 2021
YearPublicationVenuePosition
2025 Generalized Parameter Lifting: Finer Abstractions for Parametric Markov Chains
Linus Heck, Tim Quatmann, Jip Spel, Joost-Pieter Katoen, Sebastian Junges
ATVA3
2022 Gradient-Descent for Randomized Controllers Under Partial Observability
Linus Heck, Jip Spel, Sebastian Junges, Joshua Moerman, Joost-Pieter Katoen
VMCAI2
2021 Finding Provably Optimal Markov Chains
abstract
Abstract Parametric Markov chains (pMCs) are Markov chains with symbolic (aka: parametric) transition probabilities. They are a convenient operational model to treat robustness against uncertainties. A typical objective is to find the parameter values that maximize the reachability of some target states. In this paper, we consider automatically proving robustness, that is, an $$\varepsilon $$ ε -close upper bound on the maximal reachability probability. The result of our procedure actually provides an almost-optimal parameter valuation along with this upper bound. We propose to tackle these ETR-hard problems by a tight combination of two significantly different techniques: monotonicity checking and parameter lifting. The former builds a partial order on states to check whether a pMC is (local or global) monotonic in a certain parameter, whereas parameter lifting is an abstraction technique based on the iterative evaluation of pMCs without parameter dependencies. We explain our novel algorithmic approach and experimentally show that we significantly improve the time to determine almost-optimal synthesis.
Jip Spel, Sebastian Junges, Joost-Pieter Katoen
TACAS (1)1
2019 Are Parametric Markov Chains Monotonic?
Jip Spel, Sebastian Junges, Joost-Pieter Katoen
ATVA1
2015 DFTCalc: Reliability Centered Maintenance via Fault Tree Analysis (Tool Paper)
Dennis Guck, Jip Spel, Mariëlle Stoelinga
ICFEM2