703144 VU Embedded and Real-time Systems

Sommersemester 2022 | Stand: 14.06.2022 LV auf Merkliste setzen
703144
VU Embedded and Real-time Systems
VU 3
5
wöch.
jährlich
Englisch

Theoretical foundations and principles of the analysis and design of embedded systems.

Practical aspects of embedded system design, mainly software design.

The course has three components:

  • Lecture: Communicate principles and practical aspects of embedded systems.
  • Exercise: Use paper and pencil to deepen your understanding of analysis and design principles.
  • Laboratory: Introduction into practical aspects of embedded systems design. Use of state-of-the-art hardware and design tools. Prep for projects.

Embedded systems are everywhere. Different to well known general purpose computing systems like personal computers or servers these computing systems form the workhorse backbone of our ever more digitalized daily life: Microwave ovens, anti-locking brakes, smart sensors and satellite-based navigation are only select examples. Without the highly specialized input-/output and comutational capabilities of emebedded systems all these applications would be unthinkable. Moreover, embedded processors by far lead the worldwide production of computing elements in numbers.

Syllabus

  • Introduction
  • Software Development
  • Hardware Components
  • HW-SW Interface
  • Programming Models
  • Operating Systems
  • Real-time Scheduling
  • Scheduling of Aperiodic, Periodic and Mixed Task Sets
  • Shared Resources
  • Power and Energy
  • Architecture Synthesis
  • Networked Embedded Systems

20% midterm exam

80% written exam, 120 minutes, open book

Edward A. Lee and Sanjit A. Seshia: Introduction to Embedded Systems, A Cyber-Physical Systems Approach, Second Edition, MIT Press, ISBN 978-0-262-53381-2, 2017.

P. Marwedel: Embedded System Design, Springer, ISBN 978-3-319-56045-8, 2018.

G.C. Buttazzo: Hard Real-Time Computing Systems. Springer Verlag, ISBN 978-1-4614-0676-1, 2011.

M. Wolf: Computers as Components – Principles of Embedded System Design. Morgan Kaufman Publishers, ISBN 978-0-128-05387-4, 2016.


In order to follow this lecture, the adjoining exercises and labs you should have basic prerequisites in computer architecture and know how to program in C. We will cover system architecture both from a software as well as a hardwar perspective, programming models, specialized embedded operating systems, real-time scheduling, architecture synthesis together with the ever-more prominent topic of power-aware design.

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Datum Uhrzeit Ort
Mi 09.03.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 16.03.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 23.03.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 30.03.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 06.04.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 27.04.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 04.05.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 11.05.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 25.05.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 01.06.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 08.06.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 15.06.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 22.06.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei
Mi 29.06.2022
09.15 - 12.00 HS 10 HS 10 Barrierefrei