Article 5 # 2'2025

View of the Article PDF: 05_Tsuman
ISSN 2958-0757

© Mykola Tsiuman, Associate Professor, Acting Head of Department,
ОRCID: 0000-0003-2537-8010, e-mail: tsuman@ukr.net
(National Transport University)

ENERGY EFFICIENCY CONTROL SYSTEM FOR VEHICULAR POWER PLANTS IN OPERATING MODES
DOI: 10.33868/0365-8392-2025-2-283-24-32

Abstract. The article is devoted to the development of a control system structure and evaluation criteria for the energy efficiency of a vehicular power plant (VPP) in operating modes. A systematic approach to managing the vehicular power plant operating modes has been developed, which includes the overall formation of an intelligent control system (ICS) for vehicular power plant operating modes, the formation of an information subsystem for data exchange during vehicular power plant operating modes management, the formation of a mathematical subsystem of the intelligent control system for vehicular power plant operating modes, and the evaluation of the effectiveness of intelligent management of vehicular power plant energy efficiency in various operating modes for specific scenarios of the “VPP-ICS” system development. The structure of the “VPP-ICS” system has been formed, within which the processes are conditionally distributed among three subsystems: informational, mathematical, and physical. The system ensures the determination of control parameters for vehicular power plant operating processes to maximize its efficiency in corresponding operating modes by achieving the maximum value of the vehicular power plant energy efficiency criterion. The patterns of changes in individual and overall integral criteria of the vehicular power plant of the BOGDAN-21114 with a 4FS 8.2/7.56 engine in operating modes corresponding to urban conditions have been evaluated. The proposed approach enables the investigation of the effectiveness of various methods for influencing the vehicular power plant operating process, including the use of alternative fuels and additives to conventional fuels, in operating modes based on the specified energy efficiency criterion. Keywords: vehicular power plant, energy efficiency, control system, operating modes, systematic approach, system structure, energy efficiency criterion, vehicle.

References
1. Hutarevych, Yu. F. (1986). Znyzhennia shkidlyvykh vykydiv i vytraty palyva dvyhunamy avtomobiliv shliakhom optymizatsii ekspluatatsiinykh faktoriv. [Reduction of the fuel consumption and emissions of diesel engines by optimizing the operating factors]. Unpublished doctoral dissertation. Kyiv Automobile and Highway Institute, Kyiv, Ukraine.
2. Holovchuk, A. F. (1992). Polipshennia palyvnoi ekonomichnosti ta znyzhennia dymnosti traktornykh dyzeliv shliakhom udoskonalennia systemy avtomatychnoho rehuliuvannia. [Improving fuel economy and reducing smoke emissions of tractor diesels by improving the automatic control system]. Unpublished doctoral dissertation. Dnipropetrovsk Agrarian University, Dnipropetrovsk, Ukraine.
3. Mateichyk, V. (2006). Metody otsiniuvannia ta sposoby pidvyshchennia ekolohichnoi bezpeky dorozhnikh transportnykh zasobiv: monohrafiia. [Methods of assessment and methods of improving the environmental safety of road transport facilities: monograph]. Kyiv, National Transport University, Ukraine.
4. Lisoval, A.A. (2010). Teoretychni osnovy upravlinnia podacheiu palyva i povitria v dyzeliakh z hazoturbinnym nadduvom. [Theoretical principles of fuel and air supply control in gas-turbine-supercharged diesel engines]. Unpublished doctoral dissertation. National Transport University, Kyiv, Ukraine.
5. Kanylo, P. (2013). Avtotransport. Palyvno-ekolohichni problemy i perspektyvy: monohrafiia. [Auto transport. Fuel-ecological problems and perspectives: monographia]. Kharkiv, Kharkiv National Automobile and Highway University, Ukraine.
6. Hrytsuk, I. V. (2016). Kontseptsiia zabezpechennia optymalnoho temperaturnoho stanu dvyhuniv i transportnykh zasobiv v umovakh ekspluatatsii. [The concept of ensuring the optimal temperature condition of engines and transport equipment in operating conditions]. Doctoral dissertation, Kharkiv National Automobile and Highway University, Kharkiv, Ukraine. Retrieved from https://dspace.khadi.kharkov.ua/handle/123456789/1859
7. Voronkov, O. I. (2017). Metodolohiia orhanizatsii robochoho protsesu pnevmodvyhuna kombinovanoi enerhetychnoi ustanovky miskoho avtomobilia. [Methodology of organizing the work process of a pneumatic combined power unit of a municipal automobile]. Doctoral dissertation, Kharkiv Na-tional Automobile and Highway University, Kharkiv, Ukraine). Retrieved from https://dspace.khadi.kharkov.ua/handle/123456789/2262
8. Klymenko, O. A. (2021). Systemne upravlinnia pidvyshchenniam efektyvnosti vykorystannia enerhii ta zmenshenniam zabrudnennia atmosfernoho povitria dorozhnimy transportnymy zasobamy. [System management for increasing the efficiency of energy use and reducing atmospheric pollution by road transport resources]. Doctoral dissertation, National Transport University, Kyiv, Ukraine. Retrieved from http://diser.ntu.edu.ua/Klymenko_dis.pdf
9. Symonenko, R. V. (2021). Pidvyshchennia efektyvnosti ekspluatatsii kolisnykh transportnykh zasobiv na osnovi intelektualnykh telematychnykh tekhnolohii. [Increasing the Efficiency of the Operation of Wheeled Vehicles Based on Intellectual Telematic Technologies]. Doctoral dissertation, National Transport University, Kyiv, Ukraine. Retrieved from http://diser.ntu.edu.ua/Symonenko_dis.pdf