Course EIT-PAN-304-K-4
System Theory (2V, 3.0 LP)
Course Type
SWS | Type | Course Form | CP (Effort) | Presence-Time / Self-Study | |
---|---|---|---|---|---|
2 | V | Lecture | 3.0 CP | 28 h | 62 h |
(2V) | 3.0 CP | 28 h | 62 h |
Basedata
SWS | 2V |
---|---|
CP, Effort | 3.0 CP = 90 h |
Position of the semester | 1 Sem. in SuSe |
Level | [4] Bachelor (Specialization) |
Language | [EN] English |
Lecturers | |
Livecycle-State | [NORM] Active |
Contents
- Metrische, normierter und lineare Hilberträume
- orthogonale Basissysteme
- Transformationen
- verallgemeinerte Fourierreihen
- iterativ lernende Regelungen
- Zustandsdarstellung linearer und nicht-linearer
- dynamischer Systeme
- Anwendung der Theorie auf Beispiele in Nachrichten- und Regelungssystemen
Literature
- W. A. Porter: Modern Foundations of Systems Engineering;
- D. Luenberger: Optimization by Vector Space Methods; Wiley
Requirements for attendance (informal)
Modules:
- [EIT-EOT-601-M-3] Theoretical Electrical Engineering I (M, 5.0 LP)
- [EIT-EOT-602-M-4] Theoretical Electrical Engineering II (M, 5.0 LP)
- [MAT-00-01-M-1] Higher Mathematics I (M, 8.0 LP)
- [MAT-00-02-M-1] Higher Mathematics II (M, 8.0 LP)
- [MAT-00-03A-M-1] Higher Mathematics: Vector Analysis and Differential Equations (for Engineering Students) (M, 8.0 LP)
- [MAT-00-03B-M-1] Higher Mathematics: Complex Analysis and Numerics (for Engineering Students) (M, 8.0 LP)
Requirements for attendance (formal)
None
References to Course [EIT-PAN-304-K-4]
Module | Name | Context | |
---|---|---|---|
[EIT-PAN-304-M-4] | System Theory | P: Obligatory | 2V, 3.0 LP |