Development of Antilock Braking System Based on Various Intelligent Control System

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This paper presents about the development of an Antilock Braking System (ABS) using quarter vehicle model and control the ABS using different type of controllers. Antilock braking system (ABS) is an important part in vehicle system to produce additional safety for drivers. In general, Antilock braking systems have been developed to reduce tendency for wheel lock and improve vehicle control during sudden braking especially on slippery road surfaces. In this paper, a variable structure controller has been designed to deal with the strong nonlinearity in the design of ABS controller. The controllers such as PID used as the inner loop controller and Fuzzy Logic as outer loop controller to develop as ABS model to control the stopping distance and longitudinal slip of the wheel.

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2394-2398

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November 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] M. Short, M.J. Pont, and Q. Huang: Simulation of Vehicle Longitudinal Dynamics University of Leicester, (2004).

Google Scholar

[2] O.T. Nyandoro, J.O. Pedro O.A. Dahunsi and B. Dwolatzky: Linear Slip Control Formulation for Vehicular Anti-Lock Braking System with Suspension Effects University of the Witwatersrand, 18th World Congress Milano, Italy, (28 August – 2 September, 2011).

DOI: 10.3182/20110828-6-it-1002.02971

Google Scholar

[3] A. Mirzaei, M. Moallem and B. Mirzaeian: Designing a Genetic-Fuzzy Anti-Lock Brake System Controller, IEEE International Symposium on Intelligent Control, Limassol, Cyprus, (June 27-29, 2005).

DOI: 10.1109/.2005.1467194

Google Scholar

[4] L. Junwei and W. Jian: Design of Anti-Lock Braking System on Variable Control Structure Shandong of University Technology, (2005).

Google Scholar

[5] A.A. Aly: Intelligent Fuzzy Logic Controller for Antilock Braking System with Road Surface Identifier IEEE International Conference on Mechatronics and Automation, (2010).

DOI: 10.1109/icma.2010.5589106

Google Scholar

[6] S. John, J.O. Pedro and L.T. Koczy : Adaptive Improvement of a Passive Antilock Brake Control University of the Witwatersrand, IEEE Africon Conference, Zambia, (13-15 September 2011).

DOI: 10.1109/afrcon.2011.6072040

Google Scholar

[7] G.F. Mauer,: A Fuzzy Logic Controller for an ABS Braking System IEEE Transactions of Fuzzy System, vol, 3, no. 4, (November 1995).

DOI: 10.1109/91.481947

Google Scholar