计算多体系统动力学中引入多体系统离散时间传递矩阵法的混合算法研究

高浩鹏;黄映云;赵建华;孙宇鹏

振动与冲击 ›› 2013, Vol. 32 ›› Issue (15) : 178-183.

PDF(1570 KB)
PDF(1570 KB)
振动与冲击 ›› 2013, Vol. 32 ›› Issue (15) : 178-183.
论文

计算多体系统动力学中引入多体系统离散时间传递矩阵法的混合算法研究

  • 高浩鹏,黄映云,赵建华,孙宇鹏
作者信息 +

Study on the hybrid algorithm of computational dynamics of multibody system introduced discrete time transfer matrix method of multibody system

  • GAO Hao-peng,HUANG Ying-yun,ZHAO Jian-hua,SUN Yu-peng
Author information +
文章历史 +

摘要

以复杂机械系统动力学建模为研究背景,在计算多体动力学和多体系统离散时间传递矩阵法的理论基础上,论述了这两种方法动力学建模与分析的特点;在此基础上,提出了在计算多体动力学中混合多体系统离散时间传递矩阵法的算法,并论述了使用该算法对机械系统进行动力学建模及分析的过程。该算法适合于对复杂机械系统进行动力学建模及分析,并且易于使用计算机应用软件实现。以某典型机械连接结构为算例,通过该算法进行建模与分析,论证了该算法的可行性,也表明该算法的优点。

Abstract

Taking the modeling of complex system dynamics as research background, with the instruction of computational dynamics of multi-body systems theory and discrete time transfer matrix method, this paper discusses the advantages and disadvantages of the two methods about modeling and solving. On that basis, the hybrid algorithm of dynamics of multibody system introduced discrete time transfer matrix method is proposed. And, this paper discusses the dynamics modeling process of mechanical system using this hybrid algorithm. The hybrid algorithm is fit for dynamics modeling and solving of complex mechanical system, and it is easily achieved by computer application softwares. Taken the typical mechanical structure as example, the whole process of modeling and solving by hybrid algorithm is achieved. The results show the feasibility and characteristics of the hybrid algorithm.

关键词

多体动力学 / 多体系统传递矩阵法 / 建模 / 混合算法

Key words

dynamics of multibody system / transfer matrix method of multibody system / modeling / hybrid algorithm

引用本文

导出引用
高浩鹏;黄映云;赵建华;孙宇鹏. 计算多体系统动力学中引入多体系统离散时间传递矩阵法的混合算法研究[J]. 振动与冲击, 2013, 32(15): 178-183
GAO Hao-peng;HUANG Ying-yun;ZHAO Jian-hua;SUN Yu-peng. Study on the hybrid algorithm of computational dynamics of multibody system introduced discrete time transfer matrix method of multibody system[J]. Journal of Vibration and Shock, 2013, 32(15): 178-183

PDF(1570 KB)

1496

Accesses

0

Citation

Detail

段落导航
相关文章

/