Integrated Chassis Control for Energy-Efficient Operation of a 2WD Battery-Electric Vehicle with In-Wheel Propulsion

Author:

Heydrich Marius1,Mitsching Thomas1,Gramstat Sebastian2,Lenz Matthias1,Ivanov Valentin1

Affiliation:

1. Technische Universität Ilmenau

2. Audi AG

Abstract

<div class="section abstract"><div class="htmlview paragraph">Battery-electric vehicles (BEVs) require new chassis components, which are realized as mechatronic systems mainly and support more and more by-wire functionality. Besides better controllability, it eases the implementation of integrated control strategies to combine different domains of vehicle dynamics. Especially powertrain layouts based on electric in-wheel machines (IWMs) require such an integrated approach to unfold their full potential.</div><div class="htmlview paragraph">The present study describes an integrated, longitudinal vehicle dynamics control strategy for a battery electric sport utility vehicle (SUV) with an electric rear axle based on in-wheel propulsion. Especially the influence of electronic brake force distribution (EBD) and torque blending control on the overall performance are discussed and demonstrated through experiments and driving cycles on public road and benchmarked to results of previous studies derived from [<span class="xref">1</span>]. It is shown that the approach improves energy efficiency and energy recovery potential by nearly ten per cent.</div></div>

Publisher

SAE International

Reference37 articles.

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3. Bertram T. Vernetzung von Längs-, Quer- und Vertikaldynamik-Regelung vol. 1 2006

4. Yu , F. , Li , D.-F. , and Crolla , D.A. Integrated Vehicle Dynamics Control – State-of-the-Art Review IEEE Vehicle Power and Propulsion Conference (VPPC), Conference Paper 2008

5. Vivas-López , C.A. , Hernández-Alcantara , D. , Tudón-Martínez , J.C. , and Morales-Menendez , R. Review on Global Chassis Control 5th IFAC Symposium on System Structure and Control 2013

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