DESIGNING HARDWARE-IN-THE-LOOP MODEL FOR TRACTION CONTROL SYSTEM ON THE VEHICLE

Main Article Content

Tai Tan Phan

Abstract

When the vehicle moves on a complicated road, the active wheels on both sides receive different torque values from the engine transmission down due to the distribution law of the differential in the active axle. Traction control in automobiles is the process of controlling the transmission torque from the engine to the active wheels so that it is suitable for the grip state of the tire and the road surface to avoid the loss of engine torque. In this paper, the research team designs a Hardware-in-the-Loop (HIL) model to control the traction of the automobile when moving in a straight line with different resistances on both sides of the active wheel, designing a traction controller with two sets of brake and engine torque controllers. Experimental results show that the traction control process achieves the expected effect of the designed Hardware-in-the-Loop model.

Downloads

Download data is not yet available.

Article Details

How to Cite
1.
Phan T. DESIGNING HARDWARE-IN-THE-LOOP MODEL FOR TRACTION CONTROL SYSTEM ON THE VEHICLE. journal [Internet]. 20Jul.2023 [cited 19May2024];13(6). Available from: https://journal.tvu.edu.vn/index.php/journal/article/view/2122
Section
Articles

References

[1] Jin L, Ling M, Li J. Development of a new traction control system using ant colony optimization.
Advances in Mechanical Engineering. 2018;10(8): 1–
12. https://doi.org/10.1177/1687814018792152.
[2] Kuntanapreeda S. Super-twisting sliding-mode traction control of vehicles with tractive force observer. Control Engineering Practice. 2015;38: 26–
36. https://doi.org/10.1016/j.conengprac.2015.01.004.
[3] Wilkinson J, Mousseau CW, Klingler T. Brake response time measurement for a hil vehicle dynamics simulator. SAE Technical Paper 2010-01-
0079. United States: SAE International; 2010.
https://doi.org/10.4271/2010-01-0079.
[4] Aksjonov A, Ricciardi V, Augsburg K, Vodovozov V, Petlenkov E. Hardware-in-the-loop test of
an open-loop fuzzy control method for decoupled electrohydraulic antilock braking system. IEEE
Transactions on Fuzzy Systems. 2020;29(5): 965–75.
https://doi.org/10.1109/TFUZZ.2020.2965868.
[5] Sorniotti A. Hardware in the loop for braking systems with anti-lock braking system and electronic
stability program (No. 2004-01-2062). SAE Technical Paper. United States: SAE International; 2004.
https://doi.org/10.4271/2004-01-2062.
[6] Velardocchia M, Sorniotti A. Hardware-In-theLoop to Evaluate Active Braking Systems
Performance. SAE Technical Paper 2005-
01–1580. United States: SAE International; 2005.
https://doi.org/10.4271/2005-01-1580.
[7] Enisz K, Tóth P, Fodor D, Kulcsár T. Vehicle dynamics based ABS ECU testing on a Real-time HIL simulator. Hungarian Journal Of Industrial Chemistry
Veszprém. 2011;39(1): 57–62.