- Issue
- Journal of Siberian Federal University. Engineering & Technologies. 2026 19 (4)
- Authors
- Blinnikov, Mikhail E.; Panteleev, Vasily I.
- Contact information
- Blinnikov, Mikhail E. : Siberian Federal University (Krasnoyarsk, Russian Federation); ; Panteleev, Vasily I.: Siberian Federal University (Krasnoyarsk, Russian Federation)
- Keywords
- flywheel energy storage; reversible energy converter; control system; synchronous machine; simulation modeling; SimInTech model
- Abstract
The paper proposes a control system for the active and reactive power of a synchronous machine with a flywheel energy storage. The active power control system takes into account the reserve of kinetic energy of the flywheel rotation, has no feedback, does not depend on the design of the synchronous machine, but requires precise consideration of the flywheel parameters and the characteristics of power losses in the storage complex. The reactive power control system is based on a mathematical model of a non-salient-pole unsaturated synchronous machine, has no feedback, but takes into account the parameters of the synchronous machine. The obtained control system was tested on a simulation model of a salient-pole synchronous machine in the SimInTech environment. The maximum error in setting the watt current was 2.18 %, the maximum error in setting the wattless current was 38 %, and the maximum angular error was 12°. The proposed active power control system can be used to control both standard salient-pole and non-salient-pole machines, as well as machines with permanent magnets. To improve the accuracy of reactive power regulation, it is possible to use a feedback-control system with feedback
- Pages
- 476–488
- EDN
- OHYVDQ
- Paper at repository of SibFU
- https://elib.sfu-kras.ru/handle/2311/158567
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0).