Publication | Closed Access
LQR-Based Adaptive Virtual Synchronous Machine for Power Systems With High Inverter Penetration
212
Citations
20
References
2018
Year
EngineeringPower Electronics ConverterVirtual Power PlantPower ElectronicsSystems EngineeringPower System ControlEnergy ControlPower SystemsEmulated InertiaElectrical EngineeringComputer EngineeringPower System DynamicHigh ShareFrequency ControlSmart GridEnergy ManagementElectromagnetic TransientPower InverterHigh Inverter Penetration
This paper presents a novel virtual synchronous machine controller for converters in power systems with a high share of renewable resources. Using a linear quadratic regulator-based optimization technique, the optimal state feedback gain is determined to adaptively adjust the emulated inertia and damping constants according to the frequency disturbance in the system, while simultaneously preserving a tradeoff between the critical frequency limits and the required control effort. Two control designs are presented and compared against the open-loop model. The proposed controllers are integrated into a state-of-the-art converter control scheme and verified through electromagnetic transient (EMT) simulations.
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