多体动力学框架下两轮车辆建模的分析和计算方法:系统文献综述

Q4 Chemical Engineering
C. A. Manrique-Escobar, C. Pappalardo, D. Guida
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引用次数: 3

摘要

本文对两轮车系统进行了系统的文献综述。为此,本文强调了在多体公式方法中描述的铰接机械系统的运动学、动力学、控制和识别特征的主要方面。首先,采用历史文献综述的方法,按时间顺序描述了两轮车建模的科学研究。这样做是为了为论文中分析的后续发展设定一个一致的背景。然后,按照本文所描述的系统的文献综述方法,在2013年至今的时间跨度内,形成了丰富的相关文献语料库。此外,文献计量方法被用于构建研究领域的概念结构图,这也允许制定主题分类。因此,考虑到已识别的文献语料库的全文,本工作对两轮车建模的多体方法的基本问题进行了综合分析。最后,本文指出了未来的研究方向
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Analytical and Computational Methodologies for Modelling Two-wheeled Vehicles within the Multibody Dynamics Framework: A Systematic Literature Review
In this paper, a literature review on two-wheeled vehicle systems is methodically performed and presented. For this purpose, the principal aspects concerning the kinematic, dynamic, control, and identification features of articulated mechanical systems described within the multibody formulation approach are emphasized in this review article. First, the scientific investigations on two-wheeled vehicle modelling are chronologically described employing a historical literature review approach. This is done to set a consistent context for the subsequent developments analyzed in the paper. Then, following the systematic literature review methodology described in this work, a rich corpus of relevant documents in the time span between 2013-present. Moreover, bibliometric methods are used to construct the conceptual structure map of the research field, which also allowed for formulating a thematic classification. Thus, considering the full-texts of the identified corpus of documents, this work presents a synthetic analysis of the fundamental issues about the multibody approaches for modelling two-wheeled vehicles. Finally, future research perspectives are pointed out in this article
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来源期刊
Applied and Computational Mechanics
Applied and Computational Mechanics Engineering-Computational Mechanics
CiteScore
0.80
自引率
0.00%
发文量
10
审稿时长
14 weeks
期刊介绍: The ACM journal covers a broad spectrum of topics in all fields of applied and computational mechanics with special emphasis on mathematical modelling and numerical simulations with experimental support, if relevant. Our audience is the international scientific community, academics as well as engineers interested in such disciplines. Original research papers falling into the following areas are considered for possible publication: solid mechanics, mechanics of materials, thermodynamics, biomechanics and mechanobiology, fluid-structure interaction, dynamics of multibody systems, mechatronics, vibrations and waves, reliability and durability of structures, structural damage and fracture mechanics, heterogenous media and multiscale problems, structural mechanics, experimental methods in mechanics. This list is neither exhaustive nor fixed.
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