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Marcelo Forets edited this page Sep 20, 2019
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Name | Techniques | Refs |
---|---|---|
Ariadne | hybrid automata, interval verified integration, constraint solving | [BBC+ 08] |
Breach | D10 | |
CHARON | composed agents and modes, simulation | [AGH+00, ADE+01] |
CheckMate | hybrid automata, convex polyhedron-based flowpipe construction | [CK98, SRKC00] |
C2E2 | ||
CORA | A15, AG16, AGK18 | |
CORA/SX | ||
d/dt | hybrid automata, orthogonal polyhedron-based flowpipe construction | [ADM02, Dan00] |
dReach | hybrid automata, interval verified integration, constraint solving | [Gao12, GKC13] |
DynIbex | ||
Ellipsoidal Toolbox | hybrid automaton with linear time-varying continuous dynamics, Ellipsoidal calculus | [KV06] |
Flow* | Taylor models | |
Flowpipes.jl | https://github.com/fireofearth/2019s-verification | |
HyDRA | ||
Hylaa | ||
Hylaa-Continuous | ||
HyST | A Source Transformation and Translation Tool for Hybrid Automaton Models | |
HySAT/iSAT | hybrid automata, interval verified integration, constraint solving | [FHT+07, FH07] |
Isabelle/HOL | ||
HSolver | hybrid automata | conservative abstraction, constraint solving |
HYSDEL | discrete hybrid automata, simulation | [Bem04, Kva08] |
HyTech | hybrid automata, conservative abstraction, polyhedral computation | [HHWT95, HHWT97] |
JuliaReach | http://github.com/juliareach/ | |
KeYmaera | hybrid programs, automated theorem proving | [PQ08, Pla10] |
Level set toolbox | hybrid automata, level set method | [MT00, MT05] |
MATISSE | constrained linear systems, bisimulation abstraction, zonotope computation | [GP05] |
NLTOOLBOX | continuous systems, discrete polynomial systems,hybridization, Bernstein polynomial technique | [ADG07, TD13] |
PHAVer | hybrid automata, conservative abstraction, polyhedral computation | [Fre05a, Fre05b] |
SpaceEx | hybrid automata with linear dynamics, support function-based flowpipe construction | [Le 09, FLD+11] |
SymReach | ||
TIRA | https://arxiv.org/pdf/1902.05204.pdf | |
XSpeed |