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2021 | OriginalPaper | Buchkapitel

Virtual Proving Ground Simulation in Practice for Vehicle Durability and Ride Comfort Performance

verfasst von : Jian Shao, Yunping Zhou, Hua Wang, Shuai Zhou, Zhongling Jiang, Wenjuan Wang

Erschienen in: Proceedings of China SAE Congress 2019: Selected Papers

Verlag: Springer Singapore

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Abstract

A procedure of virtual proving ground simulation in practice for vehicle durability and ride performance is introduced in this paper. Digital road models including of durability and ride performance roads are created by a way of 3D laser scanning on proving ground. Then a high-accuracy full vehicle multi-body dynamic model is built, using complete vehicle design parameters. Meanwhile, due to its well-known ability to deal with medium and high frequency dynamic problems, FTire is incorporated in building the full vehicle model. Based on the road load data acquisition, driver control programs are developed to make the MBD model traveling with same track and speed as the test car, and then VPG simulation and validation are fulfilled. Comparing with test results, simulation results make a good prediction on wheel center forces, spring displacements, damper forces, and so on. Hence, the VPG simulation technology provides a powerful tool to meet the demand of vehicle durability and ride comfort analysis.

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Literatur
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Zurück zum Zitat Liu L (2015) A method of load prediction based on virtual road profile. Shanghai Auto 01(33):22–27 Liu L (2015) A method of load prediction based on virtual road profile. Shanghai Auto 01(33):22–27
2.
Zurück zum Zitat Wu Y, Zhou Y, Wang J et al (2017) Application of virtual proving ground simulation technology in impact fatigue analysis of knuckle. In: Proceedings of 2017 SAE-China congress & exhibition. SAE-China, Shanghai, pp 1539–1542 Wu Y, Zhou Y, Wang J et al (2017) Application of virtual proving ground simulation technology in impact fatigue analysis of knuckle. In: Proceedings of 2017 SAE-China congress & exhibition. SAE-China, Shanghai, pp 1539–1542
3.
Zurück zum Zitat Xing R, Liu Y (2018) Method of the dynamic load cascading based on virtual durable road. J Shenyang Aerosp Univ 6(35):39–49 Xing R, Liu Y (2018) Method of the dynamic load cascading based on virtual durable road. J Shenyang Aerosp Univ 6(35):39–49
4.
Zurück zum Zitat Cheng K, Gao J, Lv Z (2010) VPG-based simulation and analysis on vehicle driving comfort. Chin J Constr Mach 2(8):208–212 Cheng K, Gao J, Lv Z (2010) VPG-based simulation and analysis on vehicle driving comfort. Chin J Constr Mach 2(8):208–212
6.
Zurück zum Zitat Zhang H (2016) Comparative study on the SWIFT model and the FTire model. Jilin University Zhang H (2016) Comparative study on the SWIFT model and the FTire model. Jilin University
Metadaten
Titel
Virtual Proving Ground Simulation in Practice for Vehicle Durability and Ride Comfort Performance
verfasst von
Jian Shao
Yunping Zhou
Hua Wang
Shuai Zhou
Zhongling Jiang
Wenjuan Wang
Copyright-Jahr
2021
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-7945-5_9

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