FORMATION OF A METHODOLOGY FOR IMPROVING THE PERFORMANCE OF A TRACTOR IN THE TRACTION MODE UNDER UNSTABLE STATE PARAMETERS

Keywords: tractor, traction mode, functional indicators, state instability, measurement accuracy, control reliability, performance

Abstract

The article discusses the problems of improving the performance of a tractor under unstable state parameters. The performance of a tractor is characterized not only by its ability to work (perform the assigned functions), but also by compliance with regulatory, technical, and design documentation. Taking into account that ensuring the stability of the tractor’s operation in the traction mode is the basis for improving its performance, the study presents a methodology for ensuring the accuracy of its operation under unstable state parameters. In accordance with the current Ukrainian regulatory documents, the functional indicators include the traction-speed properties of the tractor in the traction mode, the stability of movement and braking. Using a measuring and recording complex developed on the basis of the method of partial accelerations, with the participation of the authors of this article, the functional indicators of the John Deere 8335R and John Deere 8430R tractors were evaluated when performing various agricultural technologies. The maximum error when comparing theoretical and experimental results does not exceed 5 %. Existing methods and means for assessing the functional indicators of tractors when aggregated with mounted, trailed, etc., agricultural machines, which are based on dynamometric devices, are not acceptable for assessing the performance of tractors in various operating conditions. The issue of improving the performance of tractors as part of variable-mass transportation and technological units, combined units when performing various agricultural technologies, which are currently in the highest demand in Ukraine’s agricultural sector, remains open. Based on the results of the research, a methodology for improving the performance of a tractor in traction mode by ensuring the stability of functional indicators has been substantiated. It has been theoretically proven and experimentally confirmed that a tractor in traction mode is efficient when the stability of traction and speed properties, stability of movement and braking is ensured. A methodology for ensuring the functional accuracy of a tractor in traction mode when evaluating its output and input parameters has been formulated. A technique for assessing the control reliability of functional accuracy and the performance of a tractor by errors of the first kind (failure to pass) and the second kind (false failure) has been proposed.

References

1. DSTU 2861-94. Nadiinist tekhniky. Analiz nadiinosti. Osnovni polozhennia – [Reliability of equipment. Reliability analysis. Substantive provisions]. Kyiv : Natsionalnyi standart Ukrainy, 1994. 36 p. [in Ukrainian]
2. DSTU 7463:2013. Silskohospodarska tekhnika. Traktory silskohospodarski. Klasyfikatsiia pokaznykiv – [Agricultural machinery. Agricultural tractors. Classification of indicators]. Kyiv : Natsionalnyi standart Ukrainy, 2013. 11 p. [in Ukrainian]
3. DSTU ISO 5725-1:2005. Tochnist (pravylnist i pretsyziinist) metodiv i rezultativ vymiriuvannia. Chastyna I. Osnovni polozhennia ta vyznachennia – [Accuracy (correctness and precision) of measurement methods and results. Part I. Basic provisions and definitions]. Kyiv : Natsionalnyi standart Ukrainy, 2005. 29 p. [in Ukrainian]
4. Jiahao Qin, Anbo Wu, Zhansheng Song, Zhizhu He, Chiider S. Suh, Zhongxiang Zhu, Zhen Li. Recovering tractor stability from an intensive rollover with a momentum flywheel and active steering: System formulation and scale-model verification. Computers and Electronics in Agriculture. 2021. Vol. 190. doi: 10.1016/j.compag.2021.106458
5. Klets D.M. Modeling of Mobile Vehicle Skid in Traction Movement Mode. Motrol. Commission of Motorization and Energetics in Agriculture. Lublin, 2013. Vol. 15(7). P. 156–161.
6. Lebedev A., Shuliak M., Khalin S., Lebedev S., Szwedziak K., Lejman K., Niedbała G., Łusiak T. Methodology for Assessing Tractor Traction Properties with Instability of Coupling Weight. Agriculture. 2023. Vol. 13(5). P. 977. doi: 10.3390/agriculture13050977
7. Lebedev A.T., Artemov M.P. Obgruntuvannia efektyvnosti vykorystannia gruntoobrobnykh mashynno-traktornykh ahrehativ modeliuvanniam partsialnykh pryskoren – [Rationalization of the effectiveness of the use of soil tillage machinetractor units by modeling partial] / Leonid Pogorilyy Ukrainian Scientific Research Institute. Collection of scientific papers. 2013. Vol. 17(31). P. 280–293. [in Ukrainian]
8. Lebedev A.T., Lebedev S.A., Korobko A.I. Kvalimetriia ta metrolohichne zabezpechennia vyprobuvan traktoriv – [Qualimetry and metrological of tractors testing]. Kharkiv : Miskdruk, 2018. 394 p. [in Ukrainian]
9. Lebedev A.T., Shuliak M.L. Assessment of the stability of agricultural technologies in crop production to changes in parameters and operating modes of tractor units. Motrol. Commission of Motorization and Energetics in Agriculture. Lublin, 2016. Vol. 18(5). P. 53–58.
10. OECD, Code 2. Standard code for the official testing of agricultural and forestry tractor performance. Organisation for Economic Co-operation and Development. Paris, France, 2012. URL http://www.oecd.org
11. Shuliak M.L. Pidvyshchennia efektyvnosti ekspluatatsii enerhonasychenoho traktora v ahrehati z silskohospodarskoiu mashynoiu zminnoi masy – [Increasing the efficiency of operation of an energy tractor in a unit with an agricultural machine of variable mass]. Kharkiv : Bulletin of the KhNTUSG, 2014. Vol. 148. P. 280–286. [in Ukrainian]
12. Zhen Li, Muneshi Mitsuoka, Eiji Inoue, Takashi Okayasu, Yasumaru Hirai. Development of stability indicators for dynamic Phase I overturn of conventional farm tractors with front axle pivot. Biosystems Engineering. 2015. Vol. 134. P. 55–67. doi: 10.1016/j.biosystemseng.2015.03.016
Published
2023-12-04
How to Cite
Lebedev, A., Shuliak, M., Lebedev, S., Shaposhnyk, V., & Podliesnyi, A. (2023). FORMATION OF A METHODOLOGY FOR IMPROVING THE PERFORMANCE OF A TRACTOR IN THE TRACTION MODE UNDER UNSTABLE STATE PARAMETERS. Bulletin of Sumy National Agrarian University. The Series: Mechanization and Automation of Production Processes, (3 (53), 60-67. https://doi.org/10.32782/msnau.2023.3.10