DocumentCode :
2355
Title :
Robust coordinated control for hybrid electric bus with single-shaft parallel hybrid powertrain
Author :
Yang, Chao ; Jiao, Xiaohong ; Li, Liang ; Zhang, Yahui ; Zhang, Lipeng ; Song, Jian
Author_Institution :
Yanshan University, People´s Republic of China
Volume :
9
Issue :
2
fYear :
2015
fDate :
1 19 2015
Firstpage :
270
Lastpage :
282
Abstract :
The efficient coupling driving control is a key technique that affects both the fuel economy and drivability of the hybrid electric bus (HEB). However, the uncertainties resulting from the complex driving condition and the powertrain would affect the control performance. To solve this problem, this study proposes a novel control approach, which is elaborately integrated with multi-controllers under the consideration of properties of the city-bus-route and the hybrid powertrain configuration. First, a torque split strategy with the automated mechanical transmission (AMT) gear-shifting strategy is employed to adapt the driving intention quantified by fuzzy logic. Then the coordinated control mechanism is constructed through utilising the electric machine (EM) to compensate the response deviation of engine torque, meanwhile a robust controller is designed to withstand parameter perturbation and external disturbance existing in EM. Simulation results show that the operating points of the engine and EM are adjusted into the high-efficiency areas with the assistance of AMT gear-shifting, and the EM torque tracking performance especially when parameter perturbation and external disturbance appear. Moreover, the strategy adaptively distributed the driving torque in the predefined working modes for different driver´s intentions. Thus, the efficient coupling driving of HEB might be implemented by the proposed method.
Keywords :
control system synthesis; fuel economy; fuzzy control; gears; hybrid electric vehicles; internal combustion engines; perturbation techniques; power transmission (mechanical); road vehicles; robust control; torque control; AMT gear-shifting; EM torque tracking performance; HEB; automated mechanical transmission gear-shifting strategy; city-bus-route; complex driving condition; drivability; driving intention; efficient coupling driving control; electric machine; engine torque response deviation compensation; external disturbance; fuel economy; fuzzy logic; hybrid electric bus; parameter perturbation; robust controller design; robust coordinated control mechanism; single-shaft parallel hybrid powertrain configuration; torque split strategy;
fLanguage :
English
Journal_Title :
Control Theory & Applications, IET
Publisher :
iet
ISSN :
1751-8644
Type :
jour
DOI :
10.1049/iet-cta.2014.0321
Filename :
7068085
Link To Document :
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