Title :
Phasor dynamics of thyristor-controlled series capacitor systems
Author :
Mattavelli, Paolo ; Verghese, Georgec ; Stankovic, Aleksandar
Author_Institution :
Padova Univ., Italy
fDate :
8/1/1997 12:00:00 AM
Abstract :
This paper develops simple but accurate continuous-time, large-signal dynamic models for a thyristor-controlled series capacitor (TCSC). The models are based on the representation of voltages and currents as time-varying Fourier series, and focus on the dynamics of the short-term Fourier coefficients. Truncating the series to keep only the fundamental components provides a natural dynamic generalization of the familiar quasi-static phasor representation. Systematic simplifications or refinements of their fundamental phasor dynamics model yield a variety of other models. The authors establish that even the simplest of these models predicts the dynamic behavior of the TCSC very accurately. Their phasor models provide a powerful basis for simulation, more than an order of magnitude faster than detailed time-domain circuit simulation. The phasor models present an attractive alternative to sampled-data models, having the advantages of simpler representation, modularity and direct compatibility with the phasor models that are routinely used to represent the dynamics of generators and other power system components
Keywords :
Fourier series; continuous time systems; control system analysis computing; flexible AC transmission systems; power capacitors; power system analysis computing; power system control; thyristor applications; time-varying systems; FACTS; computer simulation; continuous-time large-signal dynamic model; dynamic generalization; phasor dynamics; phasor models; quasi-static phasor representation; short-term Fourier coefficients dynamics; thyristor-controlled series capacitor systems; time-varying Fourier series; Circuit simulation; Fourier series; Power capacitors; Power system dynamics; Power system modeling; Power system simulation; Predictive models; Thyristors; Time domain analysis; Voltage;
Journal_Title :
Power Systems, IEEE Transactions on