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旋转充液系统全飞行过程非线性动力学仿真 被引量:1
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作者 李磊 任业军 +1 位作者 蔡斌 王照林 《宇航学报》 EI CAS CSCD 北大核心 2002年第4期4-11,共8页
本文考虑一类刚液耦合的旋转充液系统的飞行动力学问题 ,在依据力学变分原理给出基本方程 ,导出全飞行过程运动状态方程的基础上 ,建立了相应的仿真模型。可以通过对 Navier- Stokes方程求解和液体流动的惯性波振动特性 ,给出液体的反... 本文考虑一类刚液耦合的旋转充液系统的飞行动力学问题 ,在依据力学变分原理给出基本方程 ,导出全飞行过程运动状态方程的基础上 ,建立了相应的仿真模型。可以通过对 Navier- Stokes方程求解和液体流动的惯性波振动特性 ,给出液体的反作用力矩。经过仿真实验 ,分析角运动的时间序列 。 展开更多
关键词 旋转充液系统 全飞行过程 非线性动力学 仿真 惯性波 时间序列分析
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Hardware-in-the-loop simulation for the contact dynamic process of flying objects in space 被引量:4
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作者 GAO Feng QI ChenKun +16 位作者 REN AnYe ZHAOXianChao CAO Rui SUN Qiao WANG Qian HU Yan HE Jun JIN ZhenLin LIU RenQiang ZHANG Yong GUO WeiZhong HU ZhenYu TANG Ping NI Bo JING QianFeng WANG WeiJun GAO Peng 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第8期1167-1175,共9页
In the one-gravity environment on the ground, the simulation of the contact process of two flying objects in the zero-gravity environment of space has been a challenging issue since humans first explored space by flyi... In the one-gravity environment on the ground, the simulation of the contact process of two flying objects in the zero-gravity environment of space has been a challenging issue since humans first explored space by flying objects. Hardware-in-the-loop (HIL) simulation is an important and effective method to test the usability, reliability, and safety of real docking mechanisms in space. There are four main issues for HIL simulation systems: Design of simulators capable of high frequency response, high motion precision, high velocity, and rapid acceleration; compensation for simulation distortion; design of a control model for the HIL simulation process; and experimental verification. Here, we propose a novel HIL simulator system with a 6-DOF 3-3 perpendicular parallel mechanism and a 3-DOF 3-PRS parallel mechanism; discover the principle of simulation distortion; present distortion compensation models for the force measurement system, dynamic response, and structural dynamics of the simulator; and provide a control model for the HIL simulation process. Two kinds of experiments were performed on the pas- sive-undamped elastic rod and the docking mechanisms to test their performances and to verify the effectiveness and usability of the HIL simulator. The HIL simulation system proposed in this paper is useful for developing space docking, berthing, refu- eling, repairing, upgrading, transporting, and rescuing technologies. 展开更多
关键词 hardware-in-the-loop simulation hybrid simulation docking simulation contact dynamics parallel mechanisms simulation distortions distortions compensation
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