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低重力模拟试验平台索并联驱动系统张力优化策略 被引量:2
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作者 陈强 董强 +3 位作者 黄科 邢伟 程刚 隋毅 《航天返回与遥感》 CSCD 2020年第6期66-76,共11页
冗余索并联系统动力学方程的张力解不唯一,为保证随动平台在工作空间内姿态可控及索张力连续平稳,并且满足张力在最大最小限制范围,需要对其索张力优化策略进行研究。通过建立索并联驱动系统的动力学模型,分别运用封闭(Closed-Form,CF)... 冗余索并联系统动力学方程的张力解不唯一,为保证随动平台在工作空间内姿态可控及索张力连续平稳,并且满足张力在最大最小限制范围,需要对其索张力优化策略进行研究。通过建立索并联驱动系统的动力学模型,分别运用封闭(Closed-Form,CF)优化法、常规最小方差优化法及将张力分为上、中、下斜拉的分类最小方差优化法对系统力控工作空间(Force Controllable Workspace,FCWS)以及典型工况的运动轨迹张力进行优化计算,结果表明:在相同张力限制条件下,采用CF优化法计算的FCWS范围最小,常规最小方差优化法次之,分类最小方差优化法计算的FCWS最大并满足系统要求;在相同运动轨迹条件下,采用CF优化法计算的张力上限最大,常规最小方差优化法次之,分类最小方差优化法的张力上限最小并满足系统要求;将分类最小方差优化法在索并联驱动系统进行张力试验,结果表明系统张力变化规律符合该优化算法的理论值,证明了该优化法的正确性。综上所述,将分类最小方差优化法确定为系统的张力优化策略。 展开更多
关键词 索并联驱动系统 矢量封闭原理 索力优化 刚度控制 重力模拟试验平台 航天返回
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Attitude Control Experiments of Cubic Rover on Low-Gravity Testbed 被引量:2
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作者 ZENG Xiangyuan JIANG Bowen +2 位作者 HUSSAIN Muhammad Talha JIANG Jianxun YANG Runyi 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第2期143-151,共9页
In-situ exploration of asteroid surfaces is of great scientific significance.Internally actuated rovers have been released to asteroid surfaces but without enough controllability.To investigate the attitude control ch... In-situ exploration of asteroid surfaces is of great scientific significance.Internally actuated rovers have been released to asteroid surfaces but without enough controllability.To investigate the attitude control characteristics of the cubic rover for asteroid surface exploration,a series of experiments are carried out using the self-designed rover and the low-gravity testbed.The experiments focus on two major themes:The minimum flywheel speed for cubic rover to produce a walking motion in different conditions,and the relationship between the rover’s rotation angle and the flywheel speed in twisting motion.The rover’s dynamical descriptions of the walking and twisting motions are first derived.The features and design of the low-gravity testbed are then summarized,including its dynamics,setup,and validation.A detailed comparison between the dynamic model and the experimental results is presented,which provides a basic reference of the cubic rover’s attitude control in low-gravity environments. 展开更多
关键词 cubic rover low-gravity testbed walking motion twisting motion planetary exploration
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