Bifurcation Phenomena in Power System - Subsynchronous Resonance: Controlling Hopf Bifurcation and Chaos of Subsynchronous Resonance in Multimachine Power System - Majdi Alomari - Libros - LAP LAMBERT Academic Publishing - 9783659143922 - 31 de mayo de 2012
En caso de que portada y título no coincidan, el título será el correcto

Bifurcation Phenomena in Power System - Subsynchronous Resonance: Controlling Hopf Bifurcation and Chaos of Subsynchronous Resonance in Multimachine Power System

Precio
$ 55,99
sin IVA

Pedido desde almacén remoto

Entrega prevista 25 de jun. - 8 de jul.
Añadir a tu lista de deseos de iMusic

A bifurcation theory is applied to multimachine power system to investigate the complex dynamics of the system. The second system of the IEEE second benchmark model of Subsynchronous Resonance (SSR) is considered. The system can be mathematically modeled as a set of first order nonlinear ordinary differential equations with the compensation factor as a bifurcation (control) parameter. Therefore, bifurcation theory can be applied to nonlinear dynamical systems. Initially, the system is modeled as a set of first order nonlinear ordinary differential equations with the compensation factor as a bifurcation parameter. The effect of machine components, i.e. damper winding, Automatic Voltage Regulator (AVR), and Power System Stabilizer (PSS), and machine saturation are considered. Linear and nonlinear controllers are used to control the Hopf bifurcation and chaos utilizing bifurcation theory and center manifold theory. Furthermore, Flexible AC Transmission System (FACTS) controllers such as the Thyristor Controlled Series Capacitor (TCSC), the Static Synchronous Series Compensator (SSSC) and the Static Compensator (STATCOM) are used to control bifurcations of SSR in the considered system.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 31 de mayo de 2012
ISBN13 9783659143922
Editores LAP LAMBERT Academic Publishing
Páginas 140
Dimensiones 150 × 8 × 226 mm   ·   227 g
Lengua Alemán