Preview

Power engineering: research, equipment, technology

Advanced search

Vibration control of electrical equipment using the software «DREAM v.5»

https://doi.org/10.30724/1998-9903-2025-27-6-3-13

Abstract

RELEVANCE. Modern electrical equipment plays a critical role in the energy and industrial sectors. The most pressing problem in the operation of industrial electrical machines is energy efficiency. Energy efficiency is assessed by the electrical power consumed. But the efficiency of industrial electrical units can also be assessed by other criteria. Using the vibration monitoring method, it is possible to increase the energy efficiency of an electric motor by eliminating faults. High requirements for the operation and maintenance of electrical equipment, in turn, impose high requirements on the control systems that service them. GOAL. The goal is to conduct vibration testing of electrical equipment using the DREAM v.5 software. METHODS. The method of non-destructive testing of electrical equipment is used based on spectral analysis of vibration parameters using the DREAM v.5 software. RESULTS. Spectral analysis of vibration characteristics of industrial electrical equipment was carried out using the DREAM v.5 software and SD-23 measuring equipment. CONCLUSION. The introduction of “DREAM v.5” into the vibration control system makes it possible to increase the efficiency of vibration control of electrical equipment. An intuitive interface and data visualization facilitate the process of interpreting measurement results, which makes it possible to quickly assess the condition of equipment and make informed decisions.

About the Authors

V. R. Basenko
Kazan State Power Engineering University
Russian Federation

Vasily R. Basenko – Kazan State Power Engineering University

Kazan



V. A. Manakhov
Kazan State Power Engineering University
Russian Federation

Valery A. Manakhov – Kazan State Power Engineering University

Kazan



References

1. Rednikov S. N. et al. Diagnostics of electrical components of hydraulic equipment: the effectiveness of an integrated approach // Agroengineering. - 2024. - Vol. 24. - No. 2. - P. 71-77.

2. Skvortsov O. B., Stashenko V. I. Dynamic mechanical loads on conductive elements of electromechanical equipment associated with the impact of electric and magnetic fields // BBK 22.9 M 39 Editorial board: Dr. of Phys. and Mathematics, Professor V. E. Gromov, Dr. of Engineering Sciences, Associate Professor D. V. Zagulyaev. – 2023. – V. 13. – P. 91.

3. Gubarev V. A. Modern methods of vibration control of high-voltage transformers // Innovative path of development as a response to the challenges of the new time. – 2021. – P. 23-26.

4. Zelenina A. I. Design of the Yarnemskaya HPP on the Onega River. Vibration control system of a hydraulic unit: dis. – Siberian Federal University; Sayano-Shushensky branch of SFU, 2023.

5. Zayniev A. V., Shaidullin V. F., Khakimyanov M. I. Analysis of modern methods of diagnostics of gas piston units with synchronous generators at oil production sites // Electrical and information complexes and systems. - 2023. - Vol. 19. - No. 3. - P. 133-144.

6. Li J. Y., Zhu S. Self-powered active vibration control: concept, modeling, and testing // Engineering. - 2022. - Vol. 11. - P. 126-137.

7. Piven I. S. Ensuring reliability and diagnostics of defects in hydropower equipment: fault analysis and vibration diagnostics methods // Science Bulletin. - 2025. - Vol. 4. - No. 1 (82). - P. 1215- 1223.

8. Crocker M. J., Arenas J. P. Engineering acoustics: noise and vibration control. - John Wiley & Sons, 2021.

9. Zhao Q. et al. Vibration control of a rotor system by shear thickening fluid dampers //Journal of Sound and Vibration. - 2021. - Vol. 494. - P. 115883.

10. Jin X. et al. Robust vibration control for active suspension system of in-wheel-motor-driven electric vehicle via μ-synthesis methodology //Journal of Dynamic Systems, Measurement, and Control. – 2022. – Vol. 144. – No. 5. – P. 051007.

11. Modeling the operation of mobile charging station equipment for charging electric vehicles in order to confirm compliance with climatic and mechanical performance groups / T. I. Petrov, A. R. Safin, E. I. Gracheva [et al.] // Bulletin of Moscow State Technical University. Transactions of Murmansk State Technical University. – 2022. – Vol. 25, No. 4. – P. 365-377. – DOI 10.21443/1560-9278-2022-25-4-365- 377. – EDN JILKEG.

12. Development of a mock-up of a mobile electric transport charging unit and a test rig / A. R. Safin, A. N. Tsvetkov, T. I. Petrov [et al.] // Natural and technical sciences. - 2023. - No. 7 (182). - P. 138- 145. - DOI 10.25633/ETN.2023.07.09. - EDN NZWEGG.

13. Analysis of the technical level of developments in the field of mobile charging units for electric transport / A. R. Safin, V. R. Basenko, M. F. Nizamiyev [et al.] // News of higher educational institutions. Problems of energy. - 2023. - Vol. 25, No. 3. - P. 55-64. – DOI 10.30724/1998-9903-2023-25-3-55-64. – EDN BJTZLX.

14. Laser Control and Measuring Complex for Non-contact Vibration Control of the Power Transformer Technical Condition / V. Basenko, O. Vladimirov, I. Ivshin [et al.] // Lecture Notes in Civil Engineering. – 2022. – Vol. 190. – P. 157-167. – DOI 10.1007/978-3-030-86047-9_17. – EDN EIGGGZ.

15. 3D model of a power transformer for studying its technical condition based on vibration parameters / V. R. Basenko, M. F. Nizamiyev, I. V. Ivshin, O. V. Vladimirov // News of higher educational institutions. Problems of power engineering. - 2022. - Vol. 24, No. 3. - P. 130-143. - DOI 10.30724/1998-9903-2022-24-3-130-143. - EDN TTLTLL.

16. Wen B. et al. Vibration utilization engineering. - Cham : Springer, 2022. - P. 57.


Review

For citations:


Basenko V.R., Manakhov V.A. Vibration control of electrical equipment using the software «DREAM v.5». Power engineering: research, equipment, technology. 2025;27(6):3-13. (In Russ.) https://doi.org/10.30724/1998-9903-2025-27-6-3-13

Views: 10


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)