This volume contains the lectures given in honor to Georg Färber as tribute to his contributions in the area of real-time and embedded systems. The chapters of many leading scientists cover a wide range of aspects, like robot or automotive vision systems or medical aspects.
This volume contains the lectures given in honor to Georg Färber as tribute to his contributions in the area of real-time and embedded systems. The chapters of many leading scientists cover a wide range of aspects, like robot or automotive vision systems or medical aspects.
Theoretical Foundations.- System Behaviour Models with Discrete and Dense Time.- Temporal Uncertainties in Cyber-Physical Systems.- Large-Scale Linear Computations With Dedicated Real-Time.- Architectures Interface-based Design of Real-Time Systems.- The Logical Execution Time Paradigm.- Connecting Theory and Practise.- Improving the Precision of WCET Analysis by Input Constraints and Model-derived Flow Constraints.- Reconciling Compilation and Timing Analysis.- System Level Performance Analysis for Real-Time Multi-Core and Network Architectures.- Trustworthy Real-Time Systems.- Predictably Flexible Real-time Scheduling.- Innovative Application Domains.- Detailed visual recognition of road scenes for guiding autonomous vehicles.- System architecture for future driver assistance based on stereo vision.- As Time Goes By: Research on L4-Based Real-Time Systems.- A Real-Time Capable Virtualized Information and Communication Technology Infrastructure for Automotive Systems.- Robot Basketball -A New Challenge For Real-Time Control.- FlexRay Static Segment Scheduling.- Real-Time Knowledge for Cooperative Cognitive Automobiles.
Theoretical Foundations.- System Behaviour Models with Discrete and Dense Time.- Temporal Uncertainties in Cyber-Physical Systems.- Large-Scale Linear Computations With Dedicated Real-Time.- Architectures Interface-based Design of Real-Time Systems.- The Logical Execution Time Paradigm.- Connecting Theory and Practise.- Improving the Precision of WCET Analysis by Input Constraints and Model-derived Flow Constraints.- Reconciling Compilation and Timing Analysis.- System Level Performance Analysis for Real-Time Multi-Core and Network Architectures.- Trustworthy Real-Time Systems.- Predictably Flexible Real-time Scheduling.- Innovative Application Domains.- Detailed visual recognition of road scenes for guiding autonomous vehicles.- System architecture for future driver assistance based on stereo vision.- As Time Goes By: Research on L4-Based Real-Time Systems.- A Real-Time Capable Virtualized Information and Communication Technology Infrastructure for Automotive Systems.- Robot Basketball -A New Challenge For Real-Time Control.- FlexRay Static Segment Scheduling.- Real-Time Knowledge for Cooperative Cognitive Automobiles.
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