SUPERVISORY HYBRID CONTROL

CHF 97.55
Auf Lager
SKU
OT2E6L1SPB9
Stock 1 Verfügbar
Geliefert zwischen Di., 27.01.2026 und Mi., 28.01.2026

Details

A supervisory hybrid control design approach is proposed for the operation and control of a wind energy conversion and battery storage system during grid-connected and in islanded operation. A finite hybrid-automata based modeling paradigm for the system is presented. The proposed model defines the allowable operating states and inter-state transition paths managed by the supervisory control layer. The subject system has been partitioned into three independent system modules using a modular control design approach. The supervisory control layer combines and configures control schemes of the constituent modules to suite the requirements of operation during any one operating state of the system. Transition management strategies implemented through the supervisory control layer ensure smooth inter-state transitions and bumpless switching among regulators. Detailed mathematical models of the system are provided in each operating state. Frequency domain linear analysis and time domain electromagnetic transient simulations are presented for the microgrid system under steady state and dynamic operating conditions including temporary faults on the utility grid.

Autorentext

Dr. Shahid Khan holds a B.Sc. in Mathematics as well as Electrical Power Engineering,an M.Sc. in Power Systems Engineering and a Ph.D. in energy systems from University of Toronto, Canada. His research interests include power system simulations, dynamics & control and applications of power electronics in power systems.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783843363990
    • Genre Elektrotechnik
    • Sprache Englisch
    • Anzahl Seiten 256
    • Größe H220mm x B150mm x T16mm
    • Jahr 2010
    • EAN 9783843363990
    • Format Kartonierter Einband
    • ISBN 3843363994
    • Veröffentlichung 07.11.2010
    • Titel SUPERVISORY HYBRID CONTROL
    • Autor M. Shahid Khan
    • Untertitel GRID-INTERACTIVE WIND ENERGY CONVERSION AND BATTERY STORAGE SYSTEM
    • Gewicht 399g
    • Herausgeber LAP LAMBERT Academic Publishing

Bewertungen

Schreiben Sie eine Bewertung
Nur registrierte Benutzer können Bewertungen schreiben. Bitte loggen Sie sich ein oder erstellen Sie ein Konto.
Made with ♥ in Switzerland | ©2025 Avento by Gametime AG
Gametime AG | Hohlstrasse 216 | 8004 Zürich | Schweiz | UID: CHE-112.967.470
Kundenservice: customerservice@avento.shop | Tel: +41 44 248 38 38