Titre : |
Introduction to the statistical dynamics of automatic control systems |
Type de document : |
texte imprimé |
Auteurs : |
Vladimir, V. Solodovnikov, Auteur ; John B. Thomas, Traducteur ; Lotfi A. Zadeh, Traducteur |
Editeur : |
New York : Dover publications |
Année de publication : |
1960 |
Importance : |
XX, 307 p. |
Présentation : |
ill. |
Format : |
21 cm |
Note générale : |
Index |
Langues : |
Anglais (eng) Langues originales : Russe (rus) |
Mots-clés : |
Physique
Mécanique
Dynamique
Contrôle automatique |
Index. décimale : |
531.3 Dynamique. Cinétique |
Note de contenu : |
Summary :
1. Frequency characteristics, transfer functions, and impulsive responses of dynamic systems
2. Some auxiliary data from the theory of probability
3. Stationary random processes
4. Dynamic system analysis for random inputs
5. Methods of approximation of spectral density functions
6. Determination of th minimum mean-squared error and the formula for the optimum transfer function
7. Optimum statistical prediction, smoothing and differentiation
8. Calculation of the optimum transfer function for a finite time of observation and for a useful signal containing a componet in the form of a prscribed function of prescribed function of time |
Introduction to the statistical dynamics of automatic control systems [texte imprimé] / Vladimir, V. Solodovnikov, Auteur ; John B. Thomas, Traducteur ; Lotfi A. Zadeh, Traducteur . - New York : Dover publications, 1960 . - XX, 307 p. : ill. ; 21 cm. Index Langues : Anglais ( eng) Langues originales : Russe ( rus)
Mots-clés : |
Physique
Mécanique
Dynamique
Contrôle automatique |
Index. décimale : |
531.3 Dynamique. Cinétique |
Note de contenu : |
Summary :
1. Frequency characteristics, transfer functions, and impulsive responses of dynamic systems
2. Some auxiliary data from the theory of probability
3. Stationary random processes
4. Dynamic system analysis for random inputs
5. Methods of approximation of spectral density functions
6. Determination of th minimum mean-squared error and the formula for the optimum transfer function
7. Optimum statistical prediction, smoothing and differentiation
8. Calculation of the optimum transfer function for a finite time of observation and for a useful signal containing a componet in the form of a prscribed function of prescribed function of time |
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