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从一个程序的谈错误俘获功能的应用
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作者 王孝铣 《电脑与微电子技术》 1992年第4期46-48,共3页
关键词 程序维护 错误俘获 容错性
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通过一个实例谈错误俘获功能的应用
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作者 王孝铣 《电脑应用时代》 1992年第3期38-40,32,共4页
关键词 错误俘获功能 程序设计
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A review of the end-effector of large space manipulator with capabilities of misalignment tolerance and soft capture 被引量:20
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作者 FENG Fei TANG LiNa +2 位作者 XU JianFeng LIU Hong LIU YiWe 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第11期1621-1638,共18页
The space manipulator which has advantages of high dexterity and universality, is used to the space capturing usually. According to the different types of mechanical interfaces of targets, the on orbit capturing opera... The space manipulator which has advantages of high dexterity and universality, is used to the space capturing usually. According to the different types of mechanical interfaces of targets, the on orbit capturing operation includes capturing of cooperative target and capturing of uncooperative target. The performances of the famous large space manipulators named space shuttle remote manipulator system(SRMS), the space station remote manipulator system(SSRMS) and the Europe robotic arm(ERA) are reviewed and studied respectively. Moreover, the space manipulators being developed by China for space station is also surveyed. Based on the performance analysis of the large space manipulators and end-effectors, which are adapted to the construction and daily maintenance for the large space structure such as the space station, the basic requirements of large misalignment tolerance capability, soft capturing capability and hard docking capability for the end-effector of large space manipulator are proposed in this paper. According to these requirements, the capture mechanism and methods that can enable the end-effector to have the capability of misalignment tolerance and soft capturing are presented. The development trend and key technologies of the large space manipulators and the end-effectors are also reviewed. 展开更多
关键词 space station large space manipulator END-EFFECTOR large misalignment tolerance soft capture on-orbit capturing
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