Neural Network Predictive Controller for Grid-Connected Virtual Synchronous Generator
August 14, 2019 ยท Declared Dead ยท ๐ North American Power Symposium
"No code URL or promise found in abstract"
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Authors
Sepehr Saadatmand, Mohammad Saleh Sanjarinia, Pourya Shamsi, Mehdi Ferdowsi, Donald C. Wunsch
arXiv ID
1908.05199
Category
cs.NE: Neural & Evolutionary
Cross-listed
eess.SY
Citations
31
Venue
North American Power Symposium
Last Checked
3 months ago
Abstract
In this paper, a neural network predictive controller is proposed to regulate the active and the reactive power delivered to the grid generated by a three-phase virtual inertia-based inverter. The concept of the conventional virtual synchronous generator (VSG) is discussed, and it is shown that when the inverter is connected to non-inductive grids, the conventional PI-based VSGs are unable to perform acceptable tracking. The concept of the neural network predictive controller is also discussed to replace the traditional VSGs. This replacement enables inverters to perform in both inductive and non-inductive grids. The simulation results confirm that a well-trained neural network predictive controller illustrates can adapt to any grid impedance angle, compared to the traditional PI-based virtual inertia controllers.
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