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Titlebook: Languages, Design Methods, and Tools for Electronic System Design; Selected Contributio Rolf Drechsler,Robert Wille Book 2016 Springer Inte

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Book 2016esults, practical experiences and newideas in the application of specification, design and verification languages tothe design, modeling and verification of integrated circuits, complexhardware/software embedded systems, and mixed-technology systems..
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A System-Level Power Model for AMS-Circuits e.g. potential disturbances due to crosstalk or ground bounce, which in the past can not be completely addressed until layout, can now be verified at the early stage of the design phase. The proposed power model is implemented as part of a simulation framework, which uses SystemC-AMS, and is applied in designing a battery management IC.
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Standard Compliant Co-simulation Models for Verification of Automotive Embedded Systemsry to unify the exchange of simulation models between suppliers and OEMs. The standard defines functional mockup units (FMU) as components which implement the FMI. The creation and exchange of simulation models with customers and suppliers across the automotive supply chain is highly beneficial: In
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Temporal Decoupling with Error-Bounded Predictive Quantum Controldigital controller hardware and embedded real-time software. We use SystemC/TLM 2.0 in conjunction with a cycle-count accurate temporal decoupling approach (TD) to simulate digital components and firmware code execution at high speed while preserving clock-cycle accuracy and, thus, real-time behavio
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SystemC-AMS Simulation of Conservative Behavioral Descriptionslectronics and continuous time behavior. SystemC-AMS allows modeling of systems that are either conservative and low level or continuous time and behavioral, which is a limited range compared to other AMS HDLs. This work addresses this challenge by extending SystemC-AMS support to a new level of abs
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A System-Level Power Model for AMS-Circuitslevel of abstraction, by extending the state-machine based power estimation method. For this purpose, we model power consumption in power states by statistical model, and in state-transitions by a transfer function. With the help of the new model, signal-integrity issue from power distribution grid,
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