ジャーナル情報

Journal of Logical and Algebraic Methods in Programming (JLAMP)

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インパクトファクター:
1.0
出版社:
Elsevier
ISSN:
2352-2208
閲覧:
20052
フォロー:
1

論文募集

Journal of Logical and Algebraic Methods in Programming (JLAMP) is an academic journal published by Elsevier. (ISSN 2352-2208, impact factor 1.0, CCF C).

Aims & Scope The Journal of Logical and Algebraic Methods in Programming is an international journal whose aim is to publish high quality, original research papers, survey and review articles, tutorial expositions, and historical studies in the areas of logical and algebraic methods and techniques for guaranteeing correctness and performability of programs and in general of computing systems. All aspects will be covered, especially theory and foundations, implementation issues, and applications involving novel ideas. Topics of interest to the journal include: • Applications of algebras, co-algebra and categories to programming • Applications of proof theory and model theory to programming • Constraint programming • Foundations of Programming Paradigms • Logic programming • Logical Foundations of Program Security • Models and Analytical Models for Cyber-Physical Systems • Process Calculi • Programming Models • Quantitative Methods for System Analysis • Specification and verification of systems Researchers interested in acting as a guest editor should review the guest editor/proposal guidelines. The Journal of Logical and Algebraic Methods in Programming complements Elsevier's Science of Computer Programming and Theoretical Computer Science by its focus on the foundations and the application of logical, algebraic and categorical methods to programming and to the development of trustworthy computing systems.
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Special Issues

Special Issue on Reconfigurable Transition Systems: Semantics, Logics and Applications 投稿締切日: 2026-11-30 Reconfigurable Transition Systems (RTS) are dynamic relational structures (graphs) that evolve along its execution, in the sense that their accessibility relation, their set of nodes or their labelling change when their edges are crossed. These structures have proven to be suitable to compactly represent complex reactive and reconfigurable behaviours. Namely, the ability of reacting or readapting under the influence of certain events is a very distinctive feature of many diverse situations and objects. An autonomous vehicle that changes its route due to a new strike occurring, the behaviour of a software component after a memory disposal, or a DNA mutation as the result of a viral infection, are different examples that witness the importance of modelling about changes in adetermined situation. Practical user cases have aroused the interest of the logic community in the study of variants of RTS, by developing formal methods to properly reason about such situations. This issue aims to collect experiences and results from a community of researchers working on different ways to model reconfigurable and reactive systems from a formal perspective. This includes theoretical approaches (like hybrid logics, reactive frames, model-update logics, and topological and algebraic semantics), or formalisms designed for specific purposes (like separation logic in software verification, dynamic epistemic logic in AI planning, and others). Guest editors: Dr. José Proença, University of Porto Faculty of Sciences, Portugal Assoc. Professor Umberto Rivieccio, National Distance Education University, Spian Special issue information: The areas of interest include, but are not limited to: **Reconfigurable transitions systems (RTS)** Models for the analysis of reconfigurable systems Applications of formal models for reconfigurable systems Computational tools to animate and analyze RTS Generalizations of RTS - Fuzzy RTS, Paraconsistent RTS, Weighted RTS, Stochastic RTS, etc. Featured Transition Systems Reconfigurable Cyber Physical Systems Logical Methods Dynamic Logics, Separation Logics, Dynamic Epistemic Logics for RTS Bisimulations and general algebraic constructions Model Checking and Tools Reactive systems and Process Algebra Logics for Cyber Physical Systems Topological and Algebraic Semantics Applications of AI for RTS Manuscript submission information: Submission deadline: November 30th, 2026 Submissions should follow JLAMP’s guidelines for authors, available at: Guide for Authors. Manuscripts must be submitted via the JLAMP Editorial System (EM): Submission Link. During submission, please select “VSI:ReacTS 2025” as the article type. Keywords: Reconfigurable transitions systems; Reactive systems; Logical methods; Algebraic semantics https://www.sciencedirect.com/special-issue/333325/special-issue-on-reconfigurable-transition-systems-semantics-logics-and-applications
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Special Issue on JLAMP_ReacTS 2025 投稿締切日: 2026-11-30 Reconfigurable Transition Systems (RTS) are dynamic relational structures (graphs) that evolve along its execution, in the sense that their accessibility relation, their set of nodes or their labelling change when their edges are crossed. These structures have proven to be suitable to compactly represent complex reactive and reconfigurable behaviours. Namely, the ability of reacting or readapting under the influence of certain events is a very distinctive feature of many diverse situations and objects. An autonomous vehicle that changes its route due to a new strike occurring, the behaviour of a software component after a memory disposal, or a DNA mutation as the result of a viral infection, are different examples that witness the importance of modelling about changes in adetermined situation. Practical user cases have aroused the interest of the logic community in the study of variants of RTS, by developing formal methods to properly reason about such situations. This issue aims to collect experiences and results from a community of researchers working on different ways to model reconfigurable and reactive systems from a formal perspective. This includes theoretical approaches (like hybrid logics, reactive frames, model-update logics, and topological and algebraic semantics), or formalisms designed for specific purposes (like separation logic in software verification, dynamic epistemic logic in AI planning, and others). Guest editors: Dr. José Proença, University of Porto Faculty of Sciences, Portugal Assoc. Professor Umberto Rivieccio, National Distance Education University, Spian Special issue information: The areas of interest include, but are not limited to: **Reconfigurable transitions systems (RTS)** - Models for the analysis of reconfigurable systems - Applications of formal models for reconfigurable systems - Computational tools to animate and analyze RTS - Generalizations of RTS - Fuzzy RTS, Paraconsistent RTS, Weighted RTS, Stochastic RTS, etc. - Featured Transition Systems - Reconfigurable Cyber Physical Systems **Logical Methods** - Dynamic Logics, Separation Logics, Dynamic Epistemic Logics for RTS - Bisimulations and general algebraic constructions - Model Checking and Tools - Reactive systems and Process Algebra - Logics for Cyber Physical Systems - Topological and Algebraic Semantics - Applications of AI for RTS Manuscript submission information: Submission deadline: November 30th, 2026 Please note that the submission is via non-invited content only for this special issue. Submissions should follow JLAMP’s guidelines for authors, available at: Guide for Authors. Manuscripts must be submitted via the JLAMP Editorial System (EM): Submission Link. During submission, please select “VSI:ReacTS 2025” as the article type. Keywords: Reconfigurable transitions systems; Reactive systems; Logical methods; Algebraic semantics https://www.sciencedirect.com/special-issue/333323/jlamp_reacts-2025
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Special Issue on Components Operationally: Reversibility and System Engineering 投稿締切日: 2027-01-31 This Special Issue of JLAMP collects selected contributions presented at the CORSE workshop—Components Operationally: Reversibility and System Engineering. The workshop was established to celebrate the 65th birthday of Jean-Bernard Stefani and to bring together researchers working on foundational and applied aspects of component-based and distributed systems. Guest editors: Assoc. Professor Claudio Antares Mezzina Department of Applied and Pure Sciences, University of Urbino Carlo Bo, Urbino, ITALY Special issue information: CORSE focuses on four main research areas: software engineering, system modeling, theoretical aspects of distributed systems, and reversible computing. The first three areas are strongly aligned with the traditional scope and interests of JLAMP, reflecting its long-standing commitment to rigorous methods for the design, analysis, and implementation of programming languages and systems. The fourth area, reversible computing, has gained increasing attention in recent years, driven by both theoretical advances and emerging applications in areas such as debugging, fault tolerance, and energy-aware computing. The papers included in this Special Issue provide a representative snapshot of current research at the intersection of these topics, combining solid theoretical foundations with practical insights. Together, they highlight the relevance of reversibility as a unifying concept and its potential impact on the future development of programming languages and distributed systems. Manuscript submission information: Submission deadline: Jan 31st, 2027 Submissions should follow JLAMP’s guidelines for authors, available at: Guide for authors - Journal of Logical and Algebraic Methods in Programming - ISSN 2352-2208 | ScienceDirect.com by Elsevier. Manuscripts must be submitted via the JLAMP Editorial System (EM): Editorial Manager®. During submission, please select “VSI:CORSE” as the article type. Keywords: Formal Methods, Concurrency Theory, Reversibility https://www.sciencedirect.com/special-issue/333326/components-operationally-reversibility-and-system-engineering
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