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Optimal regenerative braking with a push-belt CVT: an experimental study

van K Koos Berkel, Théo Hofman, BG Bas Vroemen, Maarten Steinbuch

Open publisher page 7 citations

Abstract

This paper describes the approach and the results of efficiency experiments on a push-belt Continuously Variable Transmission (CVT) in a new hybrid drive train. The hybrid drive train uses the push-belt CVT to charge a flywheel, with the kinetic energy of the vehicle during regenerative braking and discharge during flywheel driving. The experiments are performed on a test rig with two electric machines following prescribed speed and torque trajectories, representing the flywheel and vehicle load. The approach includes the design of a control strategy for the variator, which enables regenerative braking. The experimentsshow that the CVT can be used very efficiently in the proposed hybrid drive train.

About this research paper

What this paper is about

This paper describes the approach and the results of efficiency experiments on a push-belt Continuously Variable Transmission (CVT) in a new hybrid drive train. The hybrid drive train uses the push-belt CVT to charge a flywheel, with the kinetic energy of the vehicle during regenerative braking and discharge during flywheel driving. The experiments are performed on a test rig with two electric machines following prescribed speed and torque trajectories, representing the flywheel and vehicle load. The approach includes the design of a control strategy for the variator, which enables regenerative braking. The experimentsshow that the CVT can be used very efficiently in the proposed hybrid drive train.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper describes the approach and the results of efficiency experiments on a push-belt Continuously Variable Transmission (CVT) in a new hybrid drive train. The hybrid drive train uses the push-belt CVT to charge a flywheel, with the kinetic energy of the vehicle during regenerative braking and discharge during flywheel driving. The experiments are performed on a test rig with two electric machines following prescribed speed and torque trajectories, representing the flywheel and vehicle load. The approach includes the design of a control strategy for the variator, which enables regenerative braking. The experimentsshow that the CVT can be used very efficiently in the proposed hybrid drive train.

Key concepts: Flywheel, Regenerative brake, Automotive engineering, Torque, Continuously variable transmission, Engineering, Engine braking, Dynamic braking

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