Lateral stability control of fully electric vehicles
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Date
2015
Journal Title
Journal ISSN
Volume Title
Publisher
Korean Soc Automotive Engineers-ksae
Open Access Color
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Abstract
The problem of vehicle lateral stability control for fully electric vehicles is addressed in this paper using two different approaches. One of them is a novel integrated lateral stability control (ILSC) system and the second one is a regenerative braking based lateral stability control system (RB-LSC). The proposed ILSC system is based on corrective yaw moment calculation, braking torque distribution and electric motor torque reduction. The proposed second method - RB-LSC - is a simpler method than the ILSC system. In this method, electric motor torque is regulated according to the vehicle side slip error and/or the vehicle yaw rate error. The performances of the proposed methods are evaluated under severe road conditions and extreme maneuvers using the commercially available CarSim vehicle dynamics software. The results show that the proposed control systems improve vehicle lateral stability significantly.
Description
Keywords
Stability control, Electric vehicles, Individual wheel braking, Electric motor torque reduction, Wheel slip control, Regenerative braking
Turkish CoHE Thesis Center URL
Fields of Science
Citation
28
WoS Q
Q4
Scopus Q
Q2
Source
Volume
16
Issue
2
Start Page
317
End Page
328