基于仿真的双挂车与三挂车横向特性比较研究

Yang Chen, Andrew Peterson, Ce Zhang, M. Ahmadian
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引用次数: 11

摘要

本文使用TruckSim研究了长组合车(LCV)的横向稳定性和操纵性,即具有28英尺双联、28英尺三联和33英尺双联的半卡车。特别是,使用TruckSim中开发的多域动力学模型,分析了这些LCV发生侧翻、后向放大和偏离跟踪的可能性。还包括根据试验结果验证卡车动态模型的工作。模拟结果表明,与双拖车卡车相比,三拖车卡车表现出更大的后向放大、更高的翻车可能性和更大的偏离轨道。此外,结果表明,将拖车长度从28英尺增加到33英尺不会增加翻车或向后放大的可能性。事实上,较长的拖车由于其较长的轴距而提供了少量额外的侧倾稳定性。
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A simulation-based comparative study on lateral characteristics of trucks with double and triple trailers
This paper investigates the lateral stability and manoeuvrability in long combination vehicles (LCVs), namely semi-trucks with 28-ft doubles, 28-ft triples, and 33-ft doubles, using TruckSim. In particular, the likelihood of rollovers, rearward amplification, and off-tracking are analysed among those LCVs using the multi-domain dynamic models developed in TruckSim. The efforts to validate the truck dynamic model against test results are also included. The simulation results show that trucks with triple trailers exhibit a larger rearward amplification, higher likelihood of rollovers, and larger off-tracking than trucks with double trailers. Additionally, the results indicate that increasing the trailer length from 28 to 33 feet does not increase the likelihood of rollovers or the rearward amplification. In fact, the longer trailers provide a slight amount of additional roll stability due to their longer wheelbase.
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来源期刊
International Journal of Vehicle Safety
International Journal of Vehicle Safety Engineering-Automotive Engineering
CiteScore
0.30
自引率
0.00%
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0
期刊介绍: The IJVS aims to provide a refereed and authoritative source of information in the field of vehicle safety design, research, and development. It serves applied scientists, engineers, policy makers and safety advocates with a platform to develop, promote, and coordinate the science, technology and practice of vehicle safety. IJVS also seeks to establish channels of communication between industry and academy, industry and government in the field of vehicle safety. IJVS is published quarterly. It covers the subjects of passive and active safety in road traffic as well as traffic related public health issues, from impact biomechanics to vehicle crashworthiness, and from crash avoidance to intelligent highway systems.
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