• Produktbild: Stability Enhancement Methods of Inverters Based on Lyapunov Function, Predictive Control, and Reinforcement Learning
  • Produktbild: Stability Enhancement Methods of Inverters Based on Lyapunov Function, Predictive Control, and Reinforcement Learning
- 13%

Stability Enhancement Methods of Inverters Based on Lyapunov Function, Predictive Control, and Reinforcement Learning

13% sparen

119,99 € UVP 139,09 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.12.2023

Abbildungen

XIV, 164 p. 79 illus., 75 illus. in color.

Verlag

Springer Singapore

Seitenzahl

164

Maße (L/B/H)

23,5/15,5/1,1 cm

Gewicht

283 g

Auflage

23001 Auflage 1st ed. 2023

Sprache

Englisch

ISBN

978-981-19-7193-8

Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.12.2023

Abbildungen

XIV, 164 p. 79 illus., 75 illus. in color.

Verlag

Springer Singapore

Seitenzahl

164

Maße (L/B/H)

23,5/15,5/1,1 cm

Gewicht

283 g

Auflage

23001 Auflage 1st ed. 2023

Sprache

Englisch

ISBN

978-981-19-7193-8

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: ProductSafety@springernature.com

Noch keine Bewertungen vorhanden

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kundinnen und Kunden durch Ihre Meinung.

Kundinnen und Kunden meinen

Bewertungen (0)

  • Produktbild: Stability Enhancement Methods of Inverters Based on Lyapunov Function, Predictive Control, and Reinforcement Learning
  • Produktbild: Stability Enhancement Methods of Inverters Based on Lyapunov Function, Predictive Control, and Reinforcement Learning
  • Introduction.- Adaptive backstepping current control of single-phase LCL-grid-connected inverters to improve its large-signal stability in the presence of parasitic resistance uncertainty.- An adaptive dual-loop Lyapunov-based control scheme for a single-phase stand-alone inverter to improve its large-signal stability.- Lyapunov-based control of three-phase stand-alone inverters to improve its large-signal stability with inherent dual control loops and load disturbance adaptivity.- An ellipse-optimized composite backstepping control strategy for a point-of-load inverter to improve its large-signal stability under load disturbance in the shipboard power system.- Stability constraining dichotomy solution based model predictive control for the three phase inverter cascaded with input EMI filter in the MEA.- Composite-bisection predictive control to stabilize the three phase inverter cascaded with input EMI filter in the SPS.- Reinforcement learning basedweighting factors’ real-time updating scheme for the FCS model predictive control to improve the large-signal stability of inverters.