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Analysis of Intrinsic Mechanistic of Stability-Tracking Control for Distributed Drive Autonomous Electric Vehicle
by
Tang, Xuequan
, Xu, Xiaowei
, Zhang, Lin
, Yan, Yunbing
, Wang, Baohua
in
Control algorithms
/ Control stability
/ Controllers
/ Dynamic models
/ Electric vehicles
/ Lateral stability
/ Motion control
/ Stability analysis
/ Steering
/ Structural hierarchy
/ Tracking control
/ Trajectory control
2021
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Analysis of Intrinsic Mechanistic of Stability-Tracking Control for Distributed Drive Autonomous Electric Vehicle
by
Tang, Xuequan
, Xu, Xiaowei
, Zhang, Lin
, Yan, Yunbing
, Wang, Baohua
in
Control algorithms
/ Control stability
/ Controllers
/ Dynamic models
/ Electric vehicles
/ Lateral stability
/ Motion control
/ Stability analysis
/ Steering
/ Structural hierarchy
/ Tracking control
/ Trajectory control
2021
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Do you wish to request the book?
Analysis of Intrinsic Mechanistic of Stability-Tracking Control for Distributed Drive Autonomous Electric Vehicle
by
Tang, Xuequan
, Xu, Xiaowei
, Zhang, Lin
, Yan, Yunbing
, Wang, Baohua
in
Control algorithms
/ Control stability
/ Controllers
/ Dynamic models
/ Electric vehicles
/ Lateral stability
/ Motion control
/ Stability analysis
/ Steering
/ Structural hierarchy
/ Tracking control
/ Trajectory control
2021
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Analysis of Intrinsic Mechanistic of Stability-Tracking Control for Distributed Drive Autonomous Electric Vehicle
Journal Article
Analysis of Intrinsic Mechanistic of Stability-Tracking Control for Distributed Drive Autonomous Electric Vehicle
2021
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Overview
For distributed drive autonomous vehicles, adding lateral stability control (LSC) to the trajectory tracking control (TTC) can optimize the distribution of the driving torque of each wheel, so that the vehicle can track the planned trajectory while maintaining stable lateral motion. However, the influence of adding LSC on the TTC system is still unclear. Firstly, a stability-track hierarchical control structure composed of LSC and TTC was established, and the interaction between the two layers was identified as the key of this paper. Then, the Intrinsic Mechanistic framework of the stability-tracking control (STC) was proposed by establishing and analyzing the vehicle dynamic model and control process of two layers. Finally, through simulation experiments, it was found that the change in the curvature of the target trajectory will make the tracking target trajectory and maintaining the lateral stability of the vehicle appear to conflict; in addition, in the LSC layer, the steering characteristics and delay characteristics of different reference models have a greater impact on the lateral stability and trajectory tracking performance; moreover, adjusting the preview time has a more obvious effect on trajectory tracking and lateral stability than the stability correction intensity coefficient.
Publisher
MDPI AG
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