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2023 Journal Impact Factor - 0.7
2023 CiteScore - 1.4
ISSN 2083-6473
ISSN 2083-6481 (electronic version)
Editor-in-Chief
Associate Editor
Prof. Tomasz Neumann
Published by
TransNav, Faculty of Navigation
Gdynia Maritime University
3, John Paul II Avenue
81-345 Gdynia, POLAND
e-mail transnav@umg.edu.pl
Discrete Laws of Capacitor Control of Asynchronous Generator Voltage
1 National University “Odessa Maritime Academy”, Odessa, Ukraine
ABSTRACT: In this article, the authors analysed the voltage stabilization system of an electrical installation with an asynchronous generator and capacitor excitation. The properties and tuning parameters of the discrete-pulse switching laws of three-phase sections of excitation capacitors of an asynchronous generator are considered. The analysis is carried out and recommendations for the use of the described digital controllers are given.
KEYWORDS: Control System, Electrical, Electronic and Control Engineering, Marine Fuel, Energy Efficiency, Marine Power Plant, Generator Set Control System, Ship's Power Plant, Asynchronous Generator (AG)
REFERENCES
Energy efficiency handbook. Toward zero emission ship operations. Helsinki: ABB Marine & Ports, 9AKK107680A8255.(2020). https://new.abb.com/marine/energy-efficiency-handbook
White paper - ABB Marine and Cranes. Using Variable Frequency Drives (VFD) to save energy and reduce emissions in newbuilds and existing ships. Energy efficient solutions. – ABB (2012).
Miikka Jaurolaa, Anders Hedinb, Seppo Tikkanenaand and Kalevi Huhtala “Optimising design and power management in energy-efficient marine vesselpower systems: a literature review”. JOURNAL OF MARINE ENGINEERING & TECHNOLOGY, vol. 18, No. 2, p.p. 92–101. (2019). - doi:10.1080/20464177.2018.1505584
Veretennik A.M. Self-oscillatory processes in the frequency stabilization system of a marine diesel generator // Ship power plants: scientific and technical. Sat. - Odessa: ONMA. - No. 12. – p.p. 30-36.(2005).
Vishnevsky, M. Mukha, A. Drankova "Improving the energy efficiency of ship electrical installations by using asynchronous generators". Proceedings of the Institute of Electrodynamics of the National Academy of Sciences of Ukraine. - Kyiv, Vol. 56. pp. 40-46. doi: 10.15407/publishing 2020.56.040 (2020). - doi:10.15407/publishing2020.56.040
Kitsis S.I. Asynchronous self-excited generators. - M.: Energoatomizdat, - 328 p. (2003).
Toroptsev N.D. Asynchronous generators for autonomous electric power plants. - M.: NTF "Energoprogress", - 87 p. (2004).
Patent No. 113039 C2, UA, H02P9/46, "Method of controlling the voltage of an asynchronous generator" / L.V. Vishnevskyi, D.L. Vishnevskyi, Publ. in Bull. No. 22, 25.11. (2016).
Vishnevsky L.V., Mukha M.Y, Dao Ming Quan. Voltage control of autonomous asynchronous generator sets / // Monograph - Odessa: NU "OMA". - 196 p. (2016).
Vishnevsky, L., Mukha, M., Vishnevsky, O., Vishnevsky, D.: Voltage Sensor of the Autonomous Generating Set. In: 2020 IEEE 15th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET). pp. 712–715 (2020). - doi:10.1109/TCSET49122.2020.235525
ISO 8528-1:2005. Alternating current generator sets driven by reciprocating internal combustion engines.
Citation note:
Vyshnevskyi L., Mukha M., Vyshnevskyi D., Drankova A.: Discrete Laws of Capacitor Control of Asynchronous Generator Voltage. TransNav, the International Journal on Marine Navigation and Safety of Sea Transportation, Vol. 18, No. 3, doi:10.12716/1001.18.03.24, pp. 689-693, 2024