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Hybrid Systems V [electronic resource] /

Contributor(s): Antsaklis, Panos [editor.] | Lemmon, Michael [editor.] | Kohn, Wolf [editor.] | Nerode, Anil [editor.] | Sastry, Shankar [editor.] | SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Lecture Notes in Computer Science: 1567Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 1999.Description: CDLXVIII, 458 p. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783540491637.Subject(s): Computer science | Special purpose computers | Architecture, Computer | Software engineering | Computers | Artificial intelligence | Complexity, Computational | Computer Science | Theory of Computation | Computer System Implementation | Artificial Intelligence (incl. Robotics) | Software Engineering | Special Purpose and Application-Based Systems | ComplexityOnline resources: Click here to access online
Contents:
Control Synthesis of Hybrid Systems Based on Predicate Invariance -- Computing Approximating Automata for a Class of Linear Hybrid Systems -- On Hybrid Systems and the Modal µ-calculus -- The Extended Linear Complementarity Problem and the Modeling and Analysis of Hybrid Systems -- Controller Scheduling Using Neural Networks: Implementation and Experimental Results -- Rigorous Design of a Fault Diagnosis and Isolation Algorithm -- Scalable Data and Sensor Fusion via Multiple Agent Hybrid Systems -- Hybrid Control Systems Using Timed Petri Nets: Supervisory Control Design Based on Invariant Properties -- A Case Study in Tool-Aided Analysis of Discretely Controlled Continuous Systems: The Two Tanks Problem -- Hybrid Systems with Finite Bisimulations -- Extracting Stable Timed Automata from Switched Model Reference Systems -- Sliding Mode Model Semantics and Simulation for Hybrid Systems -- Time-Deterministic Hybrid Transition Systems -- Heuristic Optimization and Dynamical System Safety Verification -- A Hybrid Receding—Horizon Control Scheme for Nonlinear Discrete—Time Systems -- Approximating Automata and Discrete Control for Continuous Systems — Two Examples from Process Control -- Action Systems with Continuous Behaviour -- Towards Using Hybrid Automata for the Mission Planning of Unmanned Aerial Vehicles -- Optimal Controller Switching for Stochastic Systems -- Robust Control of Hybrid Systems: Performance Guided Strategies -- Analysis of Slope-Parametric Rectangular Automata -- Control of Interval Temporal Systems -- Phase-Space Nonlinear Control Toolbox: The Maglev Experience.
In: Springer eBooks
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Control Synthesis of Hybrid Systems Based on Predicate Invariance -- Computing Approximating Automata for a Class of Linear Hybrid Systems -- On Hybrid Systems and the Modal µ-calculus -- The Extended Linear Complementarity Problem and the Modeling and Analysis of Hybrid Systems -- Controller Scheduling Using Neural Networks: Implementation and Experimental Results -- Rigorous Design of a Fault Diagnosis and Isolation Algorithm -- Scalable Data and Sensor Fusion via Multiple Agent Hybrid Systems -- Hybrid Control Systems Using Timed Petri Nets: Supervisory Control Design Based on Invariant Properties -- A Case Study in Tool-Aided Analysis of Discretely Controlled Continuous Systems: The Two Tanks Problem -- Hybrid Systems with Finite Bisimulations -- Extracting Stable Timed Automata from Switched Model Reference Systems -- Sliding Mode Model Semantics and Simulation for Hybrid Systems -- Time-Deterministic Hybrid Transition Systems -- Heuristic Optimization and Dynamical System Safety Verification -- A Hybrid Receding—Horizon Control Scheme for Nonlinear Discrete—Time Systems -- Approximating Automata and Discrete Control for Continuous Systems — Two Examples from Process Control -- Action Systems with Continuous Behaviour -- Towards Using Hybrid Automata for the Mission Planning of Unmanned Aerial Vehicles -- Optimal Controller Switching for Stochastic Systems -- Robust Control of Hybrid Systems: Performance Guided Strategies -- Analysis of Slope-Parametric Rectangular Automata -- Control of Interval Temporal Systems -- Phase-Space Nonlinear Control Toolbox: The Maglev Experience.

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