Integrated control performance of drive-by-wire independent drive electric vehicle

In order to improve the stability and safety of vehicles, it is necessary to control them. In this study, the integrated control method of drive-by-wire independent drive electric vehicle was studied. Firstly, the reference model of electric vehicle was established. Then, an integrated control metho...

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Main Authors: Yu Ling, Yuan Sunan
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:International Journal of Metrology and Quality Engineering
Subjects:
Online Access:https://www.metrology-journal.org/articles/ijmqe/full_html/2019/01/ijmqe190030/ijmqe190030.html
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spelling doaj-2f2e052d89a54574abeabc4ea0ef6e542021-09-02T13:49:07ZengEDP SciencesInternational Journal of Metrology and Quality Engineering2107-68472019-01-01101610.1051/ijmqe/2019015ijmqe190030Integrated control performance of drive-by-wire independent drive electric vehicleYu LingYuan SunanIn order to improve the stability and safety of vehicles, it is necessary to control them. In this study, the integrated control method of drive-by-wire independent drive electric vehicle was studied. Firstly, the reference model of electric vehicle was established. Then, an integrated control method of acceleration slip regulation (ARS) and direct yaw moment control (DYC) was designed for controlling the nonlinearity of tyre, and the simulation experiment was carried out under the environment of MATLAB/SIMULINK. The results showed that the vehicle lost its stability when it was uncontrolled; under the control of a single DYC controller, r and β values got some control, but the vehicle stability was still low; under the integrated control of ARS+DYC, the vehicle stability was significantly improved; under the integrated control method, the overshoot, regulation time and steady-state error of the system were all small. Under the simulation of extreme conditions, the integrated control method also showed excellent performance, which suggested the method was reliable. The experimental results suggests the effectiveness of the integrated control method, which makes some contributions to the further research of the integrated control of electric vehicles.https://www.metrology-journal.org/articles/ijmqe/full_html/2019/01/ijmqe190030/ijmqe190030.htmlindependent drive electric vehiclelinear controldirect yaw moment controlintegrated control
collection DOAJ
language English
format Article
sources DOAJ
author Yu Ling
Yuan Sunan
spellingShingle Yu Ling
Yuan Sunan
Integrated control performance of drive-by-wire independent drive electric vehicle
International Journal of Metrology and Quality Engineering
independent drive electric vehicle
linear control
direct yaw moment control
integrated control
author_facet Yu Ling
Yuan Sunan
author_sort Yu Ling
title Integrated control performance of drive-by-wire independent drive electric vehicle
title_short Integrated control performance of drive-by-wire independent drive electric vehicle
title_full Integrated control performance of drive-by-wire independent drive electric vehicle
title_fullStr Integrated control performance of drive-by-wire independent drive electric vehicle
title_full_unstemmed Integrated control performance of drive-by-wire independent drive electric vehicle
title_sort integrated control performance of drive-by-wire independent drive electric vehicle
publisher EDP Sciences
series International Journal of Metrology and Quality Engineering
issn 2107-6847
publishDate 2019-01-01
description In order to improve the stability and safety of vehicles, it is necessary to control them. In this study, the integrated control method of drive-by-wire independent drive electric vehicle was studied. Firstly, the reference model of electric vehicle was established. Then, an integrated control method of acceleration slip regulation (ARS) and direct yaw moment control (DYC) was designed for controlling the nonlinearity of tyre, and the simulation experiment was carried out under the environment of MATLAB/SIMULINK. The results showed that the vehicle lost its stability when it was uncontrolled; under the control of a single DYC controller, r and β values got some control, but the vehicle stability was still low; under the integrated control of ARS+DYC, the vehicle stability was significantly improved; under the integrated control method, the overshoot, regulation time and steady-state error of the system were all small. Under the simulation of extreme conditions, the integrated control method also showed excellent performance, which suggested the method was reliable. The experimental results suggests the effectiveness of the integrated control method, which makes some contributions to the further research of the integrated control of electric vehicles.
topic independent drive electric vehicle
linear control
direct yaw moment control
integrated control
url https://www.metrology-journal.org/articles/ijmqe/full_html/2019/01/ijmqe190030/ijmqe190030.html
work_keys_str_mv AT yuling integratedcontrolperformanceofdrivebywireindependentdriveelectricvehicle
AT yuansunan integratedcontrolperformanceofdrivebywireindependentdriveelectricvehicle
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