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Modeling and Simulation for a Tractor Equipped with Hydro-Mechanical Transmission 원문보기

Journal of biosystems engineering : JBE, v.38 no.3, 2013년, pp.171 - 179  

Choi, Seok Hwan (School of Mechanical Engineering, Sungkyunkwan University) ,  Kim, Hyoung Jin (School of Mechanical Engineering, Sungkyunkwan University) ,  Ahn, Sung Hyun (School of Mechanical Engineering, Sungkyunkwan University) ,  Hong, Sung Hwa (School of Mechanical Engineering, Sungkyunkwan University) ,  Chai, Min Jae (School of Mechanical Engineering, Sungkyunkwan University) ,  Kwon, Oh Eun (School of Mechanical Engineering, Sungkyunkwan University) ,  Kim, Soo Chul (LS Mtron LTD.) ,  Kim, Yong Joo (LS Mtron LTD.) ,  Choi, Chang Hyun (Department of Bio-Mechatronic Engineering, Sungkyunkwan University) ,  Kim, Hyun Soo (School of Mechanical Engineering, Sungkyunkwan University)

Abstract AI-Helper 아이콘AI-Helper

Purpose: A simulator for the design and performance evaluation of a tractor with a hydro-mechanical transmission (HMT) was developed. Methods: The HMT consists of a hydro-static unit (HSU), a swash plate control system, and a planetary gear. It was modeled considering the input/output relationship o...

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제안 방법

  • The HMT was modeled considering the efficiency and response of the HSU. For the efficiency of the HSU, the test results of the efficiency with respect to the stroke, operating speed, and pressure were used, and dynamic models for the HSU swash plate control system and hydraulic control valves were derived. For the planetary gear of the HMT, the output speed and torque were modeled with the engine speed and torque, and the HSU stroke.
  • In this study, a simulator that can be used for the design and performance analysis of HMT tractors was developed based on the dynamic model of the HMT by considering the HSU, swash plate control system, planetary gear, tractor longitudinal dynamics and load characteristics. Using the simulator, performance of the HMT tractor was investigated.
  • Based on the dynamic models of the HMT tractor, a performance simulator was developed. The HMT tractor simulator consists of the AMESim model of the HMT, engine and tractor dynamics and MATLAB/Simulink interface of the driver model, a controller, and a road load. Using the simulator, the performance of the HMT tractor was evaluated for the working mode and driving mode.

대상 데이터

  • HMT consists of an HSU and a planetary gear. The planetary gear is composed of single pinion planetary gears (SPPG) and has an output split structure, where the planetary gear is located at the output side.
  • HMT consists of an HSU and a planetary gear. The planetary gear is composed of single pinion planetary gears (SPPG) and has an output split structure, where the planetary gear is located at the output side. In this study, it was assumed that the planetary gear has a single-speed with gear ratio of 1:2.

이론/모형

  • Many researchers have analyzed these characteristics through empirical methods. In this study, the model suggested by Brixius was used (Brixius, 1987; Grisso et al., 2003; 2007).
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참고문헌 (12)

  1. Aitzetmuller, H. 2000. Steyr S-matic - The future CVT system. FISITA, F2000A130. 

  2. Brixius, W. W. 1987. Traction prediction equations for bias-ply tires. ASAE Paper No. 871622. St. Joseph, Mich.:ASAE. 

  3. Casoli, P., A. Vacca, G. L. Berta, S. Meleti and M. Vescovini. 2007. A numerical model for the simulation of Diesel/CVT power split transmission. 8th International Conference on Engines for Automobile, SAE 2007-24-0137. 

  4. Grisso, R. D and F. M. Zoz. 2003. Traction and tractor performance. ASAE Distinguished Lecture No. 27, pp. 1-48. 

  5. Grisso, R. D., J. V. Perumpral and F. M. Zoz. 2007. Spreadsheet for matching tractors and drawn implements. Applied Engineering in Agriculture 23(3):259-265. 

  6. Kugi, A., K. Schlacher, H. Aitzetmuller and G. Hirmann. 2000. Modeling and simulation of a hydrostatic transmission with variable-displacement pump. Mathematics and Computers in Simulation 53(2000):409-414. 

  7. Lee, D. H., K. S. Lee and W. Y. Park. 2009. A study on traction prediction of agricultural tractor by empirical method. Journal of Biosystems Engineering 34(5):297-304 (In Korean, with English abstract). 

  8. LMS Imagine. 2010. AMESim Application manuals. Rev 10. LMS Imagine SA. 

  9. Ortwig, H. 2002. New method of numerical calculation of losses and efficiencies in hydrostatic power transmissions. SAE International Off-Highway Congress co-located with CONEXPO-CON/AGG, SAE 2002-01-1418. 

  10. Park, K. M., Y. B. Ham, J. D. Jo and K. Y. Kim. 2002. The performance evaluation of servo regulator for swash plate tilting angle control of variable displacement type hydraulic piston pump. KSAE symposium, Nov, 2002, 854-859. 

  11. Ryu, K. H. 2004. Tractor engineering principles. Munundang. 

  12. Xu, L., Z. Zhou, Q. Cao and M. Zhang. 2010. Study on matching strategies and simulation of hydro-mechanical continuously variable transmission system of tractor. IEEE International Conference on Intelligent Computation Technology and Automation, pp. 527-530. 

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