Robi Malik

dblp:01/7 · DBLP profile ↗
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9ranked-venue papers
3as first author
1since 2021 · last 2021
0000-0002-6118-8129ORCID · corroborated

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

Software engineering, systems software and programming languages · 5 · 2 first-authorTheory of computation · 3 · 2 first-author · 1 since 2021Artificial intelligence and machine learning · 1 · 1 first-authorSecurity and privacy · 1Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2021 Automatic proofs of memory deallocation for a Whiley-to-C Compiler
Min-Hsien Weng, Robi Malik, Mark Utting
Formal Methods Syst. Des.2
2020 ESCAPADE: Encryption-Type-Ransomware: System Call Based Pattern Detection
Christopher Jun-Wen Chew, Vimal Kumar 0001, Panos Patros, Robi Malik
NSS4
2015 An algorithm for compositional nonblocking verification using special events
Colin Pilbrow, Robi Malik
Sci. Comput. Program.2
2014 An algorithm to test the conflict preorder
Simon Ware, Robi Malik
Sci. Comput. Program.2
2011 Nonblocking and Safe Control of Discrete-Event Systems Modeled as Extended Finite Automata
abstract
Extended Finite Automata (EFA), i.e., finite automata extended with variables, are a suitable modeling framework for discrete event systems owing to their compactness, resulting from the use of variables. In this paper, we propose a symbolic algorithm that efficiently synthesizes a supervisor for a plant modeled by an EFA and a specification defined by another EFA. The principle of the algorithm is to iteratively strengthen the guards of the plant EFA so that forbidden or blocking states become unreachable in the controlled plant. As a consequence of the algorithm, the controlled behavior is modeled by an EFA having the same structure as the plant EFA, having stronger guards and is shown to be maximally permissive. We illustrate our algorithm via a simple manufacturing example.
Lucien Ouedraogo, Ratnesh Kumar 0001, Robi Malik, Knut Åkesson
IEEE Trans Autom. Sci. Eng.3
2007 Modular Synthesis of Discrete Controllers
abstract
This paper presents supervisory control theory in a process-algebraic setting, and proposes a way of synthesising modular supervisors that guarantee nonblocking. The framework used includes the possibility of hiding actions which results in nondeterminism. As modularity crucially depends on the process equivalence used, the paper studies possible equivalences and points out that, in order to be consistent with respect to the nonblocking property and to supervisor synthesis, a conflict-preserving equivalence must be used. It applies the results to synthesise nonblocking modular supervisors for a manufacturing system.
Petra Malik, Robi Malik, David Streader, Steve Reeves
ICECCS2
2005 Adaptive Techniques for Specification Matching in Embedded Systems: A Comparative Study
Robi Malik, Partha S. Roop
IFM1
2004 Fair Testing Revisited: A Process-Algebraic Characterisation of Conflicts
Robi Malik, David Streader, Steve Reeves
ATVA1
1998 Automated Deduction of Finite-State Control Programs for Reactive Systems
Robi Malik
CADE1