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SYSTEMS' THEORY

CODE 80150
ACADEMIC YEAR 2019/2020
CREDITS 9 credits during the 2nd year of 8719 Computer Engineering (L-8) GENOVA

9 credits during the 2nd year of 8713 Biomedical Engineering (L-8) GENOVA

SCIENTIFIC DISCIPLINARY SECTOR ING-INF/04
LANGUAGE Italian
TEACHING LOCATION GENOVA (Computer Engineering)
SEMESTER Annual
TEACHING MATERIALS AULAWEB

OVERVIEW

Systems' Theory is one of the first discipline where mathematical and real aspects of engineering meet. Different skills are integrated to build and analyze mathematical models representing actual systems, in order to understand, foresee and control their behaviour.

AIMS AND CONTENT

LEARNING OUTCOMES

The course aim to the modelling and understanding the behaviour of dynamic systems. Both time domain and tranfer matrices methods will be used for linear and stationary systems, either for continuous time and for discrete time cases. Some on nonlinear systems will be said at the end of the course.

AIMS AND LEARNING OUTCOMES

The course aims to provide the students the necessay methods to build mathematica models fo dynamic systems. On the basis of such tools, the analysis and control of the considered systems will be carried out.

Atthe end of the course, the student will be able to model and analyze in different situations 'real systems' and determine if and how the  behaviour of such systems can be controlle din presence of different external stimuli.

PREREQUISITES

Calculus, Algebra, Elements of geometry in the space.

Basic skills of physics, electricity.

TEACHING METHODS

Front lessons

SYLLABUS/CONTENT

1) Preliminary definitions

2) Discrete and continuous signals

3) Laplace and Zeta Transforms

4) State equations of linear stationary siystems

5) Stability

6) Reachability

7) Observability

8) Input-Output characteristics

9) Systems' interconnection

10) Models and analysis of nonlinear systems

RECOMMENDED READING/BIBLIOGRAPHY

  • Notes on the course: URL: TEORIA DEI SISTEM: https://dibris.aulaweb.unige.it/
  • Rinaldi Piccardi: I sistemi lineari: teoria ed applicazioni. CLUP
  • Bolzern, Scattolini, Schiavoni: Fondamenti di Controlli Automatici, McGraw Hill
  • Collana Schaum: Regolazione Automatica
  • Schaum Outlines: Feedback and Control Systems
  • Antsaklis Michell: Linear Systems

TEACHERS AND EXAM BOARD

Exam Board

MICHELE AICARDI (President)

MARCO BAGLIETTO (President)

GIUSEPPE CASALINO

LESSONS

TEACHING METHODS

Front lessons

LESSONS START

Time Tabling URL

TEORIA DEI SISTEMI
http://www.ingegneria.unige.it/index.php/orario-e-calendario-delle-lezioni

Class schedule

SYSTEMS' THEORY

EXAMS

EXAM DESCRIPTION

Oral examination

ASSESSMENT METHODS

Analysis of the properties of a dynamic system.

Exam schedule

Date Time Location Type Notes
08/01/2020 09:00 GENOVA Orale
22/01/2020 09:00 GENOVA Orale
10/02/2020 09:00 GENOVA Orale
08/06/2020 09:00 GENOVA Orale
22/06/2020 09:00 GENOVA Orale
08/07/2020 09:00 GENOVA Orale
23/07/2020 09:00 GENOVA Orale
15/09/2020 09:00 GENOVA Orale