基于谐波运动的多用途运动仿真模拟器设计

Jeong-Yean Yang
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引用次数: 1

摘要

本研究提出一种具有多种谐波产生的运动模拟装置。该系统由6个自由度的仿真装置和步行、单板滑雪、水上摩托等3种运动模拟组成。在本研究中,每个关节运动都设计了曲柄-滑块机构,可以有效地平滑地产生连续曲率。与传统的线性执行器空间仿真器不同,谐波的产生及其空间组合成为该仿真器研究的关键问题。每个关节中的谐波模式被建模以产生平滑的曲率,这些曲率也被叠加以实现整体运动。此外,运动仿真的目标运动具有周期步态运动、无摩擦表面和浮力效应等不同的物理因素,分别通过整合三维图形信息进行设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harmonic Motion-based Simulator Design for Multipurpose Sports Simulation
This study proposes a sports simulation device with various harmonics generation. The proposed system is composed of 6 degrees of freedom simulator devices and three types of sports simulation such as walking, snowboard, and jet-ski. In this research, every joint movement is designed with a crank-and-slider mechanism, which is efficient for generating continuous curvature smoothly. Contrary to the conventional spatial simulator with linear actuators, harmonics generation and its spatial combinations become the crucial issue in this research. The harmonic pattern in each joint is modelled for generating smooth curvatures that are also superposed for achieving overall motions. In addition, the targeted motions of sports simulations have different physical factors of periodic gait motion, frictionless surface, and buoyant effects, which are respectively designed by integrating three dimensional graphics information.
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