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Digitale Hardware/Software-Systeme: Synthese und Optimierung (eXamen.press) - Softcover

Buch 25 von 100: eXamen.press

Teich, Jürgen

 
9783540468226: Digitale Hardware/Software-Systeme: Synthese und Optimierung (eXamen.press)

Inhaltsangabe

Systematisch: alle Verfahren für den Entwurf eingebetteter Systeme. Diese sind zwar in einen Kontext eingebettet, aber dennoch spezialisiert (Aufgaben, Schnittstellen, Einsatzgebiete). Wie Hardware- und Softwarekomponenten reibungslos miteinander kooperieren...

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Über die Autorin bzw. den Autor

Andreas Weichslgartner is currently working as a software developer at Audi Electronic Ventures GmbH. Before, he had been a researcher at the Department of Computer Science, Friedrich-Alexander University Erlangen-Nürnberg (FAU), Germany, from 2010 to 2017. He received his diploma degree (Dipl.-Ing.) in Information and Communication Technology  and his Ph.D. (Dr.-Ing.) in  Computer Science from the FAU, Germany, in 2010 and 2017, respectively. His research interests include network on chip, many-core architectures, security, machine learning, and design automation.
 
Stefan Wildermann is a postdoctoral researcher at the Department of Hardware/Software Co-Design at Friedrich-Alexander University Erlangen-Nürnberg (FAU), Germany. He received his Diploma and Doctorate degrees in Computer Science from the FAU in 2006 and 2012. Since 2012, Stefan has been a research assistant, lecturer, and group leader at the FAU's Department of Hardware/SoftwareCo-Design.
 
Michael Glaß is a Professor at the Institute of Embedded Systems/Real-Time Systems, Ulm University, Germany. From 2011 to 2016, he was an assistant professor and head of the System-level Design Automation group at the Department of Hardware/Software Co-Design, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Germany. He received his Diploma degree and Doctorate degree in Computer Science from the FAU, Germany, in 2006 and 2011, respectively. Michael's main research interests are dependability engineering for embedded systems and system-level design automation, with a particular focus on formal analysis and design space exploration.
 
Jürgen Teich has headed the Department of Hardware/Software Co-Design at Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Germany, since 2003. He received his M.S. degree (Dipl.-Ing. with honors) from the University of Kaiserslautern, Germany in 1989 and his Ph.D. degree (Dr.-Ing., summa cum laude) from the University of Saarland, Germany, in 1993. In 1994, he joined the DSP design group under Prof. E. A. Lee at the Department of Electrical Engineering and Computer Sciences (EECS), University of California at Berkeley (postdoc). From 1995 to 1998, he held a position at the Institute of Computer Engineering and Communications Networks Laboratory (TIK), ETH Zurich, Switzerland. From 1998 to 2002, he was a Full Professor at the Electrical Engineering and Information Technology Department, University of Paderborn, Germany.
 
His current research focuses on the electronic design automation of embedded systems with an emphasis on hardware/software co-design, reconfigurable computing and multi-core systems. Prof. Teich has organized various ACM/IEEE conferences/symposia as Program Chair including CODES+ISSS¿07, FPL¿08, ASAP¿10, and DATE¿16. He regularly serves as a TPC member of many program committees. He has also served on the editorial board of journals including IEEE Design & TEST, ACM TODAES and JES, and has edited two textbooks on Hardware/Software Co-Design (Springer).

Von der hinteren Coverseite

Dieses Lehrbuch gibt eine Einführung in Verfahren zum systematischen Entwurf eingebetteter Systeme. Es handelt sich dabei um Systeme, die in einen technischen Kontext eingebettet und aus Optimalitätsgründen hinsichtlich ihrer Aufgaben, Fähigkeiten, Schnittstellen und Einsatzgebiete spezialisiert sind, was im Allgemeinen eine Realisierung aus kooperierenden Hardware- und Softwarekomponenten erfordert. Wichtige Einsatzgebiete sind die Automobil- und Unterhaltungselektronik sowie die Kommunikations- und Medizintechnik.

Alle Verfahren werden in einer einheitlichen Notation für Hard- und Software beschrieben, wobei die wesentlichen Inhalte von der Modellierung bis hin zur Codegenerierung reichen. Auf Grund der steigenden Bedeutung eingebetteter Systeme stellt dieses Buch unentbehrliches Wissen für Studierende der Informatik, Elektrotechnik, Informationstechnik und Mechatronik zusammen und ist zugleich ein wertvolles Referenz- und Nachschlagewerk sowohl für Forscher als auch für Entwickler eingebetteter Systeme.

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