This paper focuses on enhancing the performance and stability of high voltage AC transmission systems by implementing a Static Var Compensator (SVC). In modern power networks, voltage instability and reactive power imbalance are critical challenges, especially under dynamic loading conditions and long-distance power transfer. The SVC, as a part of Flexible AC Transmission Systems (FACTS), provides dynamic reactive power compensation, which helps maintain voltage profiles, reduce transmission losses, and increase power transfer capability. In this study, a high voltage transmission system is modeled and analyzed using MATLAB/Simulink to observe the impact of SVC. Simulation results demonstrate significant improvements in voltage regulation, power losses, and transmission line capacity when the SVC is applied. This research validates the effectiveness of SVC in optimizing system performance and ensuring reliable power delivery in high voltage networks.
Static Var Compensator (SVC); High Voltage AC Transmission; Reactive Power Compensation; Power Transfer Capacity.
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