Drivability Improvement Control for Vehicle Start-Up Applied to an Automated Manual Transmission

Danna Jiang, Ying Huang, Zhe Zuo*, Huan Li

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

8 Citations (Scopus)

Abstract

Drivability is the key factor for the automated manual transmission. It includes fast response to the driver's demand and the driving comfort. This paper deals with a control methodology applied to an automated manual transmission vehicle for drivability enhancement during vehicle start-up phase. Based on a piecewise model of powertrain, a multiple-model predictive controller (mMPC) is designed with the engine speed, clutch disc speed, and wheel speed as the measurable input variables and the engine torque reference and clutch friction torque reference as the controller's output variables. The model not only includes the clutch dynamic, the flexible shaft dynamic, but also includes the actuators' delay character. Considering the driver's intention, a slipping speed trajectory is generated based on the acceleration pedal dynamically. The designed control strategy is verified on a complete powertrain and longitudinal vehicle dynamic model with different driver's torque demands.

Original languageEnglish
Article number5783527
JournalShock and Vibration
Volume2017
DOIs
Publication statusPublished - 2017

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