Synthesis of the optimal acceleration mode of the tower crane slewing mechanismYuriy Romasevych, Yaroslav Hubar
Romasevych, Yu., & Hubar, Ya.
(2025).
Synthesis of the optimal acceleration mode of the tower crane slewing mechanism.
Machinery & Energetics,
16(2),
9-19.
https://doi.org/10.31548/machinery/2.2025.09
|
Hardware and software complex for operational management of a flexible site of highly efficient assembly productionViktorija Smolij, Natan Smolij, Mykhailo Shvydenko, Semen Voloshyn
Smolij, V., Smolij, N., Shvydenko, M., & Voloshyn, S.
(2025).
Hardware and software complex for operational management of a flexible site of highly efficient assembly production.
Machinery & Energetics,
16(2),
20-35.
https://doi.org/10.31548/machinery/2.2025.20
|
Optimising energy distribution and detecting vulnerabilities in networks using artificial intelligenceDmytro Koshkin, Oleksiy Sadovoy, Andrii Rudenko, Vitaliy Sokolik
Koshkin, D., Sadovoy, O., Rudenko, A., & Sokolik, V.
(2025).
Optimising energy distribution and detecting vulnerabilities in networks using artificial intelligence.
Machinery & Energetics,
16(2),
36-48.
https://doi.org/10.31548/machinery/2.2025.36
|
Optimisation of a developable surface model passing through a helical curve with variable pitchAndrii Nesvidomin, Serhii Pylypaka, Tatiana Volina, Yurii Shtyka, Irina Rybenko
Nesvidomin, A., Pylypaka, S., Volina, T., Shtyka, Yu., & Rybenko, I.
(2025).
Optimisation of a developable surface model passing through a helical curve with variable pitch.
Machinery & Energetics,
16(2),
49-57.
https://doi.org/10.31548/machinery/2.2025.49
|
Simulation of fluid spraying processes in a device for automatic control of anaerobic fermentation process parameters in biogas reactorsMykola Zablodskiy, Denys Babak
Zablodskiy, M., & Babak, D.
(2025).
Simulation of fluid spraying processes in a device for automatic control of anaerobic fermentation process parameters in biogas reactors.
Machinery & Energetics,
16(2),
58-69.
https://doi.org/10.31548/machinery/2.2025.58
|
Application of programming methods for control of fluctuations in electric power systems and networksRysbek Abdyldaev, Nurkul Murzakulov, Almagul Abdullaeva, Tolgonay Dzholdosheva, Muhammadsadyk Yslamov
Abdyldaev, R., Murzakulov, N., Abdullaeva, A., Dzholdosheva, T., & Yslamov, M.
(2025).
Application of programming methods for control of fluctuations in electric power systems and networks.
Machinery & Energetics,
16(2),
70-82.
https://doi.org/10.31548/machinery/2.2025.70
|
Automated software package for selecting transport technology for grain transportation by road freight transportVitalii Tsopa, Tamara Bilko, Serhiy Cheberyachko, Oleg Deryugin, Bohdan Hrymalo
Tsopa, V., Bilko, T., Cheberyachko, S., Deryugin, O., & Hrymalo, B.
(2025).
Automated software package for selecting transport technology for grain transportation by road freight transport.
Machinery & Energetics,
16(2),
83-98.
https://doi.org/10.31548/machinery/2.2025.83
|
Aggregation of a mobile energy vehicle of the “Autotractor” with a technological moduleValerii Adamchuk, Serhiy Pohorilyy, Viktor Prysyazhnyy, Vadym Yaremenko, Valerii Mirnyi
Adamchuk, V., Pohorilyy, S., Prysyazhnyy, V., Yaremenko, V., & Mirnyi, V.
(2025).
Aggregation of a mobile energy vehicle of the “Autotractor” with a technological module.
Machinery & Energetics,
16(2),
99-107.
https://doi.org/10.31548/machinery/2.2025.99
|
Exploring novel architectural elements and design concepts for wireless sensor nodes: A case studySaurabh Mehta, Riya Modi, Pavlo Herasymenko, Serhii Usenko
Mehta, S., Modi, R., Herasymenko, P., & Usenko, S.
(2025).
Exploring novel architectural elements and design concepts for wireless sensor nodes: A case study.
Machinery & Energetics,
16(2),
108-116.
https://doi.org/10.31548/machinery/2.2025.108
|
Strength analysis and optimisation of trailer agricultural machinery structures using finite element methodsVasyl Hruban, Antonina Drobitko, Mykyta Khramov, Maksym Tovpyha
Hruban, V., Drobitko, A., Khramov, M., & Tovpyha, M.
(2025).
Strength analysis and optimisation of trailer agricultural machinery structures using finite element methods.
Machinery & Energetics,
16(2),
117-130.
https://doi.org/10.31548/machinery/2.2025.117
|
Development and implementation of electromechanical systems for the control of soil tillage unitsAnatolii Rud, Anatolii Rud
Rud, A., & Rud, A.
(2025).
Development and implementation of electromechanical systems for the control of soil tillage units.
Machinery & Energetics,
16(2),
131-145.
https://doi.org/10.31548/machinery/2.2025.131
|
Prospects for use of smart meters to reduce electricity losses in Ukraine’s power gridsLyudmyla Mikhailova, Viktor Dubik, Oleksandr Kozak, Oleg Gorbovy
Mikhailova, L., Dubik, V., Kozak, O., & Gorbovy, O.
(2025).
Prospects for use of smart meters to reduce electricity losses in Ukraine’s power grids.
Machinery & Energetics,
16(2),
146-158.
https://doi.org/10.31548/machinery/2.2025.146
|
Modelling of dynamic characteristics of tractor systems to improve stability on uneven fieldsViktor Duhanets, Pavlo Fedirko, Oleksandr Hovorov, Vitaliy Pukas, Mykola Volynkin
Duhanets, V., Fedirko, P., Hovorov, O., Pukas, V., & Volynkin, M.
(2025).
Modelling of dynamic characteristics of tractor systems to improve stability on uneven fields.
Machinery & Energetics,
16(2),
159-174.
https://doi.org/10.31548/machinery/2.2025.159
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