The features of instability in a long-distance bulk power transmission model system with superconductive power transmission lines or with superconductive synchronous generators are analyzed numerically. It is shown that self-excited oscillation is easily induced in superconductive AC power transmission systems. Torsional oscillation and electromechanical power swing in a model power system with a superconductive turbine generator power plant are analyzed for various system conditions, and it is confirmed in a digital simulation study that adequate energy control of the field winding of a superconductive generator can stabilize the power syste
The integration of renewable energy sources in the course of the energy transition is accompanied by...
This paper presents a physical explanation of dynamic instability that afflicts the present-day powe...
The application of superconducting magnet energy storage (SMES) to the stabilization of a power syst...
Series capacitors are traditionally used in practice to increase the quantity of power transmitted o...
This-thesis describes the development of comprehensive algorithms for the study of the shaft oscilla...
A superconducting power transmission system is regarded as being a promising candidate to transmit a...
Subsynchronous resonance phenomena in a power system with series-capacitor-compensated transmission ...
Integration of distributed generation is continually and gradually aecting the stability of intercon...
A power system stabilizer is employed in a power system to damp the low-frequency electromechanical ...
This paper deals mainly with how steady state-stability of interconnected power systems is influence...
International audienceWe consider power systems for which the amount of power produced by their indi...
lnduction generators can be used to supply power either in an isolated system or connected to the gr...
Turbo-generators can be subjected to negatively damped subsynchronous frequency oscillations caused ...
With the continuous integration of new energy sources, the power system gradually begins to present ...
We investigate the interplay of rotor-angle and voltage stability in electric power systems. To this...
The integration of renewable energy sources in the course of the energy transition is accompanied by...
This paper presents a physical explanation of dynamic instability that afflicts the present-day powe...
The application of superconducting magnet energy storage (SMES) to the stabilization of a power syst...
Series capacitors are traditionally used in practice to increase the quantity of power transmitted o...
This-thesis describes the development of comprehensive algorithms for the study of the shaft oscilla...
A superconducting power transmission system is regarded as being a promising candidate to transmit a...
Subsynchronous resonance phenomena in a power system with series-capacitor-compensated transmission ...
Integration of distributed generation is continually and gradually aecting the stability of intercon...
A power system stabilizer is employed in a power system to damp the low-frequency electromechanical ...
This paper deals mainly with how steady state-stability of interconnected power systems is influence...
International audienceWe consider power systems for which the amount of power produced by their indi...
lnduction generators can be used to supply power either in an isolated system or connected to the gr...
Turbo-generators can be subjected to negatively damped subsynchronous frequency oscillations caused ...
With the continuous integration of new energy sources, the power system gradually begins to present ...
We investigate the interplay of rotor-angle and voltage stability in electric power systems. To this...
The integration of renewable energy sources in the course of the energy transition is accompanied by...
This paper presents a physical explanation of dynamic instability that afflicts the present-day powe...
The application of superconducting magnet energy storage (SMES) to the stabilization of a power syst...