Steady-state and start-up transient responses of a belt-driven starter generator system for micro-hybrid electric vehicles

Author:

Li Deyu1,Zhu Hao1,Zhu Weidong2ORCID,He Zao3,Zhou Biwen3,Fan Wei1

Affiliation:

1. Failure Mechanics & Engineering Disaster Prevention and Mitigation (Key Laboratory of Sichuan Province) & Department of Mechanics and Engineering Science, Sichuan University, China

2. Department of Mechanical Engineering, University of Maryland, USA

3. State Key Laboratory of Mechanical Transmission, Chongqing University, China

Abstract

For micro-hybrid electric vehicles, the belt-driven starter generator system is a typical idle stop–start system that is used to substitute the traditional engine front-end accessory drive system. The aim of this work is to present a method to investigate steady-state and start-up transient responses of a typical belt-driven starter generator system with twin tensioner arms for micro-hybrid electric vehicles. A dynamic model of the belt-driven starter generator system is established for this scheme, where a smoothing dynamic friction model considering the velocity-weakening effect is presented to model the tensioner dry friction. Unlike some traditional dynamic models of the belt-driven starter generator system that the engine dynamics and dynamics of the belt-driven starter generator system are decoupled, an engine dynamic model, which is embedded in the dynamic model of the belt-driven starter generator system, is also established to calculate engine resistance torques at the engine starting process stage. Influences of the tensioner dry friction and stiffness on steady-state responses of the belt-driven starter generator system especially the stick–slip oscillations of the twin tensioner arms are examined. Angular oscillations and rotation speed variations of the belt-driven starter generator pulley and C/S pulley as well as the belt tension variations during the engine starting process are calculated. Influences of the tensioner dry friction and stiffness on transient dynamic performances of the belt-driven starter generator system during the engine starting process and its starting efficiency are investigated.

Funder

Fundamental Research Fund for Central Universities in China

National Natural Science Foundation of China

Miaozi Project in Science and Technology Innovation Program of Sichuan Province

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering,Automotive Engineering,General Materials Science

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