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Table of Contents
Introduction
Virtual Hardware-In-The-Loop Co-Simulation for Multi-Domain Automotive Systems via the Functional Mock-Up Interface
Standard Compliant Co-Simulation Models for Verification of Automotive Embedded Systems
Building a Dynamically Reconfigurable System Through a High-Level Development Flow
A Special-Purpose Language for Implementing Pipelined FPGA-based Accelerators
Enabler-Based Synchronizer Model for Clock Domain Crossing Static Verification
Temporal Decoupling with Error-Bounded Predictive Quantum Control
Conservative Behavioural Modelling in SystemC-AMS
Modeling Power Consumption at System-Level for Design of Power Integrity-Aware AMS-Circuits.
Virtual Hardware-In-The-Loop Co-Simulation for Multi-Domain Automotive Systems via the Functional Mock-Up Interface
Standard Compliant Co-Simulation Models for Verification of Automotive Embedded Systems
Building a Dynamically Reconfigurable System Through a High-Level Development Flow
A Special-Purpose Language for Implementing Pipelined FPGA-based Accelerators
Enabler-Based Synchronizer Model for Clock Domain Crossing Static Verification
Temporal Decoupling with Error-Bounded Predictive Quantum Control
Conservative Behavioural Modelling in SystemC-AMS
Modeling Power Consumption at System-Level for Design of Power Integrity-Aware AMS-Circuits.