A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles

The mode transition of single-shaft parallel hybrid electric vehicles (HEVs) between engine and motor has an important impact on power and drivability. Especially, in the process of mode transition from the pure motor-drive operating mode to the only engine-drive operating mode, the motor starting e...

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Main Authors: Jingang Ding, Xiaohong Jiao
Format: Article
Language:English
Published: MDPI AG 2019-12-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/9/1/54
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spelling doaj-e2f28c442bcf4c34a59378fefe21c9b42020-11-25T02:02:48ZengMDPI AGElectronics2079-92922019-12-01915410.3390/electronics9010054electronics9010054A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric VehiclesJingang Ding0Xiaohong Jiao1School of Electrical Engineering, Yanshan University, Qinhuangdao 066004, ChinaSchool of Electrical Engineering, Yanshan University, Qinhuangdao 066004, ChinaThe mode transition of single-shaft parallel hybrid electric vehicles (HEVs) between engine and motor has an important impact on power and drivability. Especially, in the process of mode transition from the pure motor-drive operating mode to the only engine-drive operating mode, the motor starting engine and the clutch control problem have an important influence on driving quality, and solutions have a bit of room for improving dynamic performance. In this paper, a novel mode transition control method is proposed to guarantee a fast and smooth mode transition process in this regard. First, an adaptive sliding mode control (A-SMC) strategy is presented to obtain the desired torque trajectory of the clutch transmission. Second, a proportional-integral (PI) observer is designed to estimate the actual transmission torque of the clutch. Meanwhile, a fractional order proportional-integral-differential (FOPID) controller with the optimized control parameters by particle swarm optimization (PSO) is employed to realize the accurate position tracking of the direct current (DC) motor clutch so as to ensure clutch transmission torque tracking. Finally, the effectiveness and adaptability to system parameter perturbation of the proposed control approach are verified by comparison with the traditional control strategy in a MATLAB environment. The simulation results show that the driving quality of the closed-loop system using the proposed control approach is obviously improved due to fast and smooth mode transition process and better adaptability.https://www.mdpi.com/2079-9292/9/1/54hybrid electric vehicles (hevs)mode transitionadaptive sliding mode control (a-smc)clutch actuatorpi observerfractional order proportional-integral-differential (fopid)
collection DOAJ
language English
format Article
sources DOAJ
author Jingang Ding
Xiaohong Jiao
spellingShingle Jingang Ding
Xiaohong Jiao
A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles
Electronics
hybrid electric vehicles (hevs)
mode transition
adaptive sliding mode control (a-smc)
clutch actuator
pi observer
fractional order proportional-integral-differential (fopid)
author_facet Jingang Ding
Xiaohong Jiao
author_sort Jingang Ding
title A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles
title_short A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles
title_full A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles
title_fullStr A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles
title_full_unstemmed A Novel Control Method of Clutch During Mode Transition of Single-Shaft Parallel Hybrid Electric Vehicles
title_sort novel control method of clutch during mode transition of single-shaft parallel hybrid electric vehicles
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2019-12-01
description The mode transition of single-shaft parallel hybrid electric vehicles (HEVs) between engine and motor has an important impact on power and drivability. Especially, in the process of mode transition from the pure motor-drive operating mode to the only engine-drive operating mode, the motor starting engine and the clutch control problem have an important influence on driving quality, and solutions have a bit of room for improving dynamic performance. In this paper, a novel mode transition control method is proposed to guarantee a fast and smooth mode transition process in this regard. First, an adaptive sliding mode control (A-SMC) strategy is presented to obtain the desired torque trajectory of the clutch transmission. Second, a proportional-integral (PI) observer is designed to estimate the actual transmission torque of the clutch. Meanwhile, a fractional order proportional-integral-differential (FOPID) controller with the optimized control parameters by particle swarm optimization (PSO) is employed to realize the accurate position tracking of the direct current (DC) motor clutch so as to ensure clutch transmission torque tracking. Finally, the effectiveness and adaptability to system parameter perturbation of the proposed control approach are verified by comparison with the traditional control strategy in a MATLAB environment. The simulation results show that the driving quality of the closed-loop system using the proposed control approach is obviously improved due to fast and smooth mode transition process and better adaptability.
topic hybrid electric vehicles (hevs)
mode transition
adaptive sliding mode control (a-smc)
clutch actuator
pi observer
fractional order proportional-integral-differential (fopid)
url https://www.mdpi.com/2079-9292/9/1/54
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AT jingangding novelcontrolmethodofclutchduringmodetransitionofsingleshaftparallelhybridelectricvehicles
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