Dimensionamiento óptimo de SVC para mejorar la estabilidad de voltaje y disminuir las pérdidas de potencia en el sistema da transmisión mediante enjambre de partículas (PSO)

The capacity of an electrical power system to maintain stability or recover the initial steady state after any disturbance that arises in the electrical network such as voltage gaps and overvoltages that test the operation of the system is called transient stability of the system, maintaining a stab...

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Autor Principal: Quinteros Flores, Jaime Francisco
Formato: bachelorThesis
Idioma: spa
Publicado: Universidad Politécnica Salesiana. Carrera Ingeniería Eléctrica. Sede Quito 2017
Materias:
Acceso en línea: Quinteros Flores, J. F. (2017). Dimensionamiento óptimo de SVC para mejorar la estabilidad de voltaje y disminuir las pérdidas de potencia en el sistema da transmisión mediante enjambre de partículas (PSO). Universidad Politécnica Salesiana. Carrera Ingeniería Eléctrica. Sede Quito
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Sumario: The capacity of an electrical power system to maintain stability or recover the initial steady state after any disturbance that arises in the electrical network such as voltage gaps and overvoltages that test the operation of the system is called transient stability of the system, maintaining a stable and safe operation of the system is a very important and challenging problem, transient stability is currently considered one of the main factors to be studied in a system, the power systems are operated close to their stability limits. For economic and environmental reasons, the FACTS devices play an important role in improving the transient tension stability, increasing the transmission capacity and oscillation damping, the integration of a joint controller to the compensator achieves a better response in the system. The study was improved voltage stability, stability times, rise times, the steady-state error and the maximum overshoot, thus increasing the reliability of the transmission system.