Results 141 to 150 of about 552 (182)
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Development and Evaluation of Anti-Lock Brake Systems
SAE Technical Paper Series, 1976<div class="htmlview paragraph">Anti-lock systems which effectively prevent wheel lock have been developed for passenger cars, trucks, articulated vehicles and buses. Six anti-lock system configurations involving individual wheel and axle control are discussed.
Maurice H. Cardon +2 more
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Synthesis and modeling of anti-lock braking system
2015 International Conference "Stability and Control Processes" in Memory of V.I. Zubov (SCP), 2015With the rapid development of engineering stronger feels the fact that the majority of accidents are human-caused. Therefore, technical systems that respond to the environment faster and more exact are being developed and applied. These systems reduce the risk of accidents, that is why they are commonly used in almost every field of our life.
Narine K. Arzumanyan +2 more
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Anti-Lock Braking Control of an Electromagnetic Brake-by-Wire System
Dynamic Systems and Control, Parts A and B, 2005This paper presents a nonlinear sliding mode type controller for slip regulation in a braking event for an electromagnetic brake-by-wire system equipped automobile. The electromagnetic brake -by-wire system under consideration consists of a set of eddy current brakes attached to the automobile wheels. The anti-lock braking controller modifies the brake
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Control Solutions for Anti-lock Braking System
2022 IEEE International Conference on Automation, Quality and Testing, Robotics (AQTR), 2022Bianca Toderean, Roxana Rusu-Both
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Development of an Anti-Lock Brake System for Motorcycle
Vehicle System Dynamics, 1995SUMMARY An Anti-Lock Brake System (ABS) system is developed for motorcycles using different control laws to improve the safety during emergent braking conditions. The mechanical design problem is first investigated so as to modify a scooter to be equipped with the proposed ABS brake system and to set up experimental test stand.
EDGE C. YEH, GUAN KAE ROAN, I HSIEN YUN
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Anti-Lock Braking Control of a Hybrid Brake-By-Wire System
Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 2006This paper presents a non-linear sliding mode type controller for slip regulation in a braking event for a hybrid electromagnetic-electrohydraulic brake-by-wire (BBW) system. The anti-lock braking system (ABS) controller modifies the brake torque command generated by a supervisory controller based on a driver request via the brake pedal sensor.
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Control Algorithm for Anti-Lock Braking System
Volume 1: Advances in Aerodynamics, 2013Safer, controlled and efficient braking is the primary objective of Anti-lock Braking System wherein an efficient and robust braking system significantly enhances the vehicle performance during both straight line motion and cornering thus resulting in drastic reduction of stopping time and distance especially for a race car in long run.
Devesh Sahu +3 more
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Proceedings of the 2004 American Control Conference, 2004
This work presents a nonlinear sliding mode type controller for slip regulation in a braking event for a hybrid electromagnetic-electrohydraulic brake-by-wire system. The ABS controller modifies the brake torque command generated by a supervisory controller based on driver's command via brake pedal sensor.
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This work presents a nonlinear sliding mode type controller for slip regulation in a braking event for a hybrid electromagnetic-electrohydraulic brake-by-wire system. The ABS controller modifies the brake torque command generated by a supervisory controller based on driver's command via brake pedal sensor.
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Fuzzy control for the anti-lock brake system
Soft Computing in Intelligent Systems and Information Processing. Proceedings of the 1996 Asian Fuzzy Systems Symposium, 2002In this paper, we develop the fuzzy controller for an ABS (anti-lock braking system). The system models of the ABS and the fuzzy controller structure are discussed. Computer simulations are given to understand the effect of some important parameters.
null Chih-Keng Chen, null Yu-Chi Wang
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