基于阿佩尔方程的车辆和系统的安全性和动力学建模问题

P. A. Lontsikh, Yuri Garifulin, S. N. Karasev, I. Livshitz
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引用次数: 0

摘要

为了提高运输的安全性,需要精确的运输系统数学模型。考虑了机械系统精确微分方程的模拟技术,使可移动物体系统和运动确定并依赖于按一定规定方式运动的可穿戴系统的可移动物体系统的数学模型的编制成为可能。该技术基于阿佩尔方程,需要对给定位置的不同广义速度和加速度值的动能和系统加速度能量进行多次计算。即使在研究非常复杂的固体体系时,用计算机计算这些函数也并不困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Problems of safety and modeling of dynamics of vehicles and systems on the basis of Appell's equations
To improve safety in transport, exact mathematical models of transport systems are required. The technique of simulation of exact differential equations of mechanical systems is considered, which makes it possible to compile mathematical models of both systems of transportable bodies and transport objects whose motion is determined and depends on wearable systems moving in a certain prescribed manner. The technique is based on Appell's equations and requires a multiple calculation of the kinetic energy and energy of the system's accelerations in a given position for different values of generalized velocities and accelerations. Computer computation of these functions is not difficult even in the study of very complex systems of solids.
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