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变形机器人倾翻稳定性仿真分析 被引量:17
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作者 刘金国 王越超 +1 位作者 李斌 马书根 《系统仿真学报》 EI CAS CSCD 北大核心 2006年第2期409-415,共7页
凹凸不平的非结构环境中,移动机器人由于系统的倾翻将导致系统损害、作业失败等一系列问题。变形机器人可以通过构形的变化来提高系统的稳定性和抗倾翻能力。理论分析了移动机器人的倾翻问题,提出稳定锥方法和倾翻性能指数对移动机器人... 凹凸不平的非结构环境中,移动机器人由于系统的倾翻将导致系统损害、作业失败等一系列问题。变形机器人可以通过构形的变化来提高系统的稳定性和抗倾翻能力。理论分析了移动机器人的倾翻问题,提出稳定锥方法和倾翻性能指数对移动机器人的静、动态稳定性进行综合判定,讨论了三模块履带机器人变形过程中的倾翻稳定性变化,同时仿真比较了机器人的五种能动构形在仰俯、偏转、倾斜等干扰组合作用下的倾翻性能。理论与仿真研究为变形机器人投入到实际应用提供了参考。 展开更多
关键词 变形机器人 稳定锥 倾翻稳定指数 能动构形 非结构环境
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A reconfigurable tracked mobile robot based on four-linkage mechanism 被引量:2
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作者 罗自荣 尚建忠 张志雄 《Journal of Central South University》 SCIE EI CAS 2013年第1期62-70,共9页
A novel reconfigurable tracked robot based on four-link mechanism was proposed and released for the complicated terrain environment. This robot was modularly designed and developed, which is composed of one suspension... A novel reconfigurable tracked robot based on four-link mechanism was proposed and released for the complicated terrain environment. This robot was modularly designed and developed, which is composed of one suspension and one pair of symmetrical deployed reconfigurable track modules. This robot can implement multiple locomotion configurations by changing the track configuration, and the geometric theory analysis shows that the track length keeps constant during the process of track reconfiguration. Furthermore, a parameterized geometric model of the robot was established to analyze the kinematic performance of the robot while overcoming various obstacles. To investigate the feasibility and correctness of design theory and robot scheme, an example robot was designed to climb 45° slopes and 200 mm steps, and a group of design parameters of the robot were determined. Finally, A prototype of this robot was developed, and the test results show that the robot own powerful mobility and obstacle overcoming performance, for example, running across obstacle like mantis, extending to stride over entrenchment, standing up to elevate height, and going ahead after overturn. 展开更多
关键词 tracked mobile robot four-linkage mechanism MOBILITY reconfigurable robot
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