Leveraging Applications of Formal Methods, Verification and Validation. Rigorous Engineering of Collective Adaptive Systems

Leveraging Applications of Formal Methods, Verification and Validation. Rigorous Engineering of Collective Adaptive Systems

12th International Symposium, ISoLA 2024, Crete, Greece, October 27-31, 2024, Proceedings, Part II

Steffen, Bernhard; Margaria, Tiziana

Springer International Publishing AG

11/2024

360

Mole

9783031751066

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Rigorous Engineering of Collective Adaptive Systems - Introduction to the 5th Track Edition.- Optimality-preserving Reduction of Chemical Reaction Networks.- Exploring Consensus Robustness in Swarms with Disruptive Individuals.- Towards Real-Time Aggregate Computing.- Epistemic Ensembles in Semantic and Symbolic Environments.- The evolving conscious agent, I.- Emergence in Multi-Agent Systems: A Safety Perspective.- The EM-BDD algorithm for learning hidden Markov models.- Is Machine Learning Model Checking Privacy Preserving?.- Matching Expectations in Ensembles: Connecting Verifiable Credentials and the Semantic Web.- Once and for all: how to compose modules - The Composition Calculus.- RailCabs and Birds in Julia - Context-Role Ensemble Engineering in Practice.- How Well Do LLMs Understand DEECo Ensemble-based Component Architectures.- Model-Driven Development of Multi-Robot Systems: From BPMN Models to X-KLAIM Code.- Rigorous Model Engineering of Hierarchical Multirate CPSs in MR-HybridSynchAADL.- An Approach for Extended Swarm Formation Flight with Drones: Protease2.0.- Monitoring Local and Global Properties of Collective Adaptive Systems.- Rigorous Analysis of Idealised Pathfinding Ants in Higher-Order Logic.- Statistical model checking of cooperative autonomous driving systems.- Attributed Point-to-point Communication in R-Check.- Local Reasoning and Attribute-based Memory Updates for Enforcing Global Invariants in Collective Adaptive Systems.
architecture verification and validation;artificial intelligence;computer programming;distributed computer systems;embedded systems;formal languages;formal logic;formal methods;formal verifications;object-oriented programming;software architecture;verification and validation