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2020 | OriginalPaper | Buchkapitel

Adaptive Steering Stability Control for A Four In-Wheel-Motor Independent-Drive Electric Vehicle

verfasst von : Rufei Hou, Li Zhai, Tianmin Sun

Erschienen in: Proceedings of China SAE Congress 2018: Selected Papers

Verlag: Springer Singapore

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Abstract

This paper proposes an adaptive steering stability control strategy for a four in-wheel-motor independent-drive electric vehicle (4MIDEV) to improve its stability on the road with different adhesion coefficients, such as on the joint road. The proposed strategy is designed as a hierarchical structure whose upper control level takes the road adhesion coefficient into account in the yaw moment control and realizes the integrated control of the yaw rate and sideslip angle. The lower control level adopts a weight-based optimal allocation algorithm to achieve different weight control of each motor torque according to road adhesion coefficient. The proposed stability control strategy was validated in a co-simulation of the Matlab/Simulink and Carsim, the results of which indicate that the proposed strategy can effectively adapt to different adhesion coefficients and achieve good steering stability control effect.

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Literatur
1.
Zurück zum Zitat Zhai L, Sun T, Wang J (2016) Electronic stability control based on motor driving and braking torque distribution for a four in-wheel motor drive electric vehicle. IEEE Trans Veh Technol 65(6):4726–4739CrossRef Zhai L, Sun T, Wang J (2016) Electronic stability control based on motor driving and braking torque distribution for a four in-wheel motor drive electric vehicle. IEEE Trans Veh Technol 65(6):4726–4739CrossRef
2.
Zurück zum Zitat Zhai L, Hou R, Sun T et al (2018) Continuous steering stability control based on an energy-saving torque distribution algorithm for a four in-wheel-motor independent-drive electric vehicle. Energies 11(2):350CrossRef Zhai L, Hou R, Sun T et al (2018) Continuous steering stability control based on an energy-saving torque distribution algorithm for a four in-wheel-motor independent-drive electric vehicle. Energies 11(2):350CrossRef
3.
Zurück zum Zitat Fallah S, Khajepour A, Fidan B et al (2013) Vehicle optimal torque vectoring using state-derivative feedback and linear matrix inequality. IEEE Trans Veh Technol 62(4):1540–1552CrossRef Fallah S, Khajepour A, Fidan B et al (2013) Vehicle optimal torque vectoring using state-derivative feedback and linear matrix inequality. IEEE Trans Veh Technol 62(4):1540–1552CrossRef
4.
Zurück zum Zitat Shuai Z, Zhang H, Wang J et al (2014) Combined AFS and DYC control of four-wheel-independent-drive electric vehicles over CAN network with time-varying delays. IEEE Trans Veh Technol 63(2):591–602CrossRef Shuai Z, Zhang H, Wang J et al (2014) Combined AFS and DYC control of four-wheel-independent-drive electric vehicles over CAN network with time-varying delays. IEEE Trans Veh Technol 63(2):591–602CrossRef
5.
Zurück zum Zitat Chen Y, Wang J (2012) Design and evaluation on electric differentials for overactuated electric ground vehicles with four independent in-wheel motors. IEEE Trans Veh Technol 61(4):1534–1542MathSciNetCrossRef Chen Y, Wang J (2012) Design and evaluation on electric differentials for overactuated electric ground vehicles with four independent in-wheel motors. IEEE Trans Veh Technol 61(4):1534–1542MathSciNetCrossRef
6.
Zurück zum Zitat Kim DH, Kim CJ, Kim SH et al (2011) Development of adaptive direct yaw-moment control method for electric vehicle based on identification of yaw-rate model. In: Intelligent vehicles symposium. IEEE, New York, pp 1098–1103 Kim DH, Kim CJ, Kim SH et al (2011) Development of adaptive direct yaw-moment control method for electric vehicle based on identification of yaw-rate model. In: Intelligent vehicles symposium. IEEE, New York, pp 1098–1103
7.
Zurück zum Zitat Tahami F, Kazemi R, Farhanghi S (2003) A novel driver assist stability system for all-wheel-drive electric vehicles. IEEE Trans Veh Technol 52(3):683–692CrossRef Tahami F, Kazemi R, Farhanghi S (2003) A novel driver assist stability system for all-wheel-drive electric vehicles. IEEE Trans Veh Technol 52(3):683–692CrossRef
8.
Zurück zum Zitat Zou G, Luo Y, Lian X et al (2008) A research of DYC for independent 4WD EV based on control target dynamic regulated. In: IEEE international conference on vehicular electronics and safety. IEEE, New York, pp 1–7 Zou G, Luo Y, Lian X et al (2008) A research of DYC for independent 4WD EV based on control target dynamic regulated. In: IEEE international conference on vehicular electronics and safety. IEEE, New York, pp 1–7
9.
Zurück zum Zitat Xiong L, Yu Z (2009) Control allocation of vehicle dynamics control for a 4 in-wheel-motored EV. In: International conference on power electronics and intelligent transportation system. IEEE, New York, pp 307–311 Xiong L, Yu Z (2009) Control allocation of vehicle dynamics control for a 4 in-wheel-motored EV. In: International conference on power electronics and intelligent transportation system. IEEE, New York, pp 307–311
10.
Zurück zum Zitat Yamakawa J, Kojima A, Watanabe K (2007) A method of torque control for independent wheel drive vehicles on rough terrain. J Terrramech 44(5):371–381CrossRef Yamakawa J, Kojima A, Watanabe K (2007) A method of torque control for independent wheel drive vehicles on rough terrain. J Terrramech 44(5):371–381CrossRef
11.
Zurück zum Zitat Kang J, Yoo J, Yi K (2011) Driving control algorithm for maneuverability, lateral stability, and rollover prevention of 4WD electric vehicles with independently driven front and rear wheels. IEEE Trans Veh Technol 60(7):2987–3001CrossRef Kang J, Yoo J, Yi K (2011) Driving control algorithm for maneuverability, lateral stability, and rollover prevention of 4WD electric vehicles with independently driven front and rear wheels. IEEE Trans Veh Technol 60(7):2987–3001CrossRef
12.
Zurück zum Zitat Li B, Goodarzi A, Khajepour A et al (2015) An optimal torque distribution control strategy for four-independent wheel drive electric vehicles. Veh Syst Dyn 53(8):1172–1189CrossRef Li B, Goodarzi A, Khajepour A et al (2015) An optimal torque distribution control strategy for four-independent wheel drive electric vehicles. Veh Syst Dyn 53(8):1172–1189CrossRef
13.
Zurück zum Zitat Guo K, Ma F (2003) Preview optimized artificial neural network driver model. Chin J Mech Eng 39(1):26–28CrossRef Guo K, Ma F (2003) Preview optimized artificial neural network driver model. Chin J Mech Eng 39(1):26–28CrossRef
14.
Zurück zum Zitat Ma Y, Guo H, Wang F et al (2016) An modular sideslip angle and road grade estimation scheme for four-wheel drive vehicles. In: Chinese control conference, pp 8962–8967 Ma Y, Guo H, Wang F et al (2016) An modular sideslip angle and road grade estimation scheme for four-wheel drive vehicles. In: Chinese control conference, pp 8962–8967
15.
Zurück zum Zitat Shimada K, Shibahata Y (1994) Comparison of three active chassis control methods for stabilizing yaw moments. In: International Congress & exposition Shimada K, Shibahata Y (1994) Comparison of three active chassis control methods for stabilizing yaw moments. In: International Congress & exposition
16.
Zurück zum Zitat Inagaki S (1994) Analysis on vehicle stability in critical cornering using phase-plane method. Avec 16(2):216–216(1) Inagaki S (1994) Analysis on vehicle stability in critical cornering using phase-plane method. Avec 16(2):216–216(1)
17.
Zurück zum Zitat Zhao L, Deng N, Ge Z et al (2014) Real-time road condition estimation for four-wheel-drive vehicle. J Harbin Inst Technol 46(11):42–46 Zhao L, Deng N, Ge Z et al (2014) Real-time road condition estimation for four-wheel-drive vehicle. J Harbin Inst Technol 46(11):42–46
Metadaten
Titel
Adaptive Steering Stability Control for A Four In-Wheel-Motor Independent-Drive Electric Vehicle
verfasst von
Rufei Hou
Li Zhai
Tianmin Sun
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-9718-9_24

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