This paper presents a novel approach of excitation controller design for power system with dynamic load where induction motor is considered as the dynamic load. To design the controller, zero dynamic design approach of feedback linearization is used. The zero dynamic design approach is applicable when the system is partially linearized. The paper also presents the linearizability of power system with dynamic load. Based on the partial linearizability, a zero dynamic excitation control law is derived for power system with dynamic load and the performance of the designed controller on a single machine infinite bus (SMIB) with induction motor load through some simulation results
Abstract: In stressed power systems with large induction machine component, there exist undamped ele...
This paper makes an attempt to assess the benefits of replacing a conventional generator excitation ...
This paper makes an attempt to assess the benefits of replacing a conventional generator excitation ...
This paper presents a nonlinear excitation controller design technique for interconnected power syst...
This paper presents a nonlinear control design method for interconnected power systems with inductio...
This paper presents a new excitation controller design for multimachine power systems to augment tra...
The selection of output function for nonlinear feedback linearizing controller is an important task ...
This paper presents a novel full-order nonlinear observer-based excitation controller design for int...
In this paper a new nonlinear excitation controller design to enhance transient stability of multima...
This paper presents a new approach to design excitation controller for power systems to enhance smal...
Power systems are composed of dynamic loads. In this paper, the induction motors which are widely us...
This paper presents a new approach to design excitation controller for power systems to enhance smal...
International audienceIn this paper, a simple improved direct feedback linearization design method f...
International audienceIn this paper, a simple improved direct feedback linearization design method f...
International audienceIn this paper, a simple improved direct feedback linearization design method f...
Abstract: In stressed power systems with large induction machine component, there exist undamped ele...
This paper makes an attempt to assess the benefits of replacing a conventional generator excitation ...
This paper makes an attempt to assess the benefits of replacing a conventional generator excitation ...
This paper presents a nonlinear excitation controller design technique for interconnected power syst...
This paper presents a nonlinear control design method for interconnected power systems with inductio...
This paper presents a new excitation controller design for multimachine power systems to augment tra...
The selection of output function for nonlinear feedback linearizing controller is an important task ...
This paper presents a novel full-order nonlinear observer-based excitation controller design for int...
In this paper a new nonlinear excitation controller design to enhance transient stability of multima...
This paper presents a new approach to design excitation controller for power systems to enhance smal...
Power systems are composed of dynamic loads. In this paper, the induction motors which are widely us...
This paper presents a new approach to design excitation controller for power systems to enhance smal...
International audienceIn this paper, a simple improved direct feedback linearization design method f...
International audienceIn this paper, a simple improved direct feedback linearization design method f...
International audienceIn this paper, a simple improved direct feedback linearization design method f...
Abstract: In stressed power systems with large induction machine component, there exist undamped ele...
This paper makes an attempt to assess the benefits of replacing a conventional generator excitation ...
This paper makes an attempt to assess the benefits of replacing a conventional generator excitation ...