26 resultados para ROBOTICS

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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Nanowires functionalized by special molecules can be used to as the candidates for biological application in many areas. In this paper, nickel nanowires, which were fabricated by electrochemical deposition and functionalized by biotinylated peptide, were applied to constructing the hybrid device powered by F-1-ATPase motors.

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Because of the load transfer effect of interface layer, the stress distribution inside the composite structure of film/substrate can be very different from the Timoshenko's model. In this paper, we give the derivation and analysis of such load transfer effect of shear-lag (S-L) model. The micro-structure size (boundary conditions) effect together with interface load transfer effect becomes more and more important as the microstructure size including the three dimensions of thickness, width and length shrinks. The microstructure size is also responsible for the so-called edge-induced stress. The edge effect and difference of S-L model and Timoshenko model are also demonstrated.

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Molecular dynamics (MD) simulation is employed to study the bio-adhesion in F1 ATP molecular motor. Histidine-peptide is widely used as linkage in micro systems because of its strong binding strength to metals. This paper focuses on the adhesion between a synthetic peptide containing 6xHis-tag (Gly-Gly-Lys-Gly-Gly-Lys-Gly-Gly-His-His-His-His-His-His) and metal substrate, which is used to define the position of the F1 ATP molecular motor on the metal substrate. It is shown that the binding strength between histidine and nickel substrate is the strongest, while that of copper is smaller and that of gold substrate is the smallest. From the result of simulation, we find that the stability of adhesion between histidine and the metal substate result of the ringed structure in histidine.

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This paper presents a novel robot named "TUT03-A" with expert systems, speech interaction, vision systems etc. based on remote-brained approach. The robot is designed to have the brain and body separated. There is a cerebellum in the body. The brain with the expert systems is in charge of decision and the cerebellum control motion of the body. The brain-body. interface has many kinds of structure. It enables a brain to control one or more cerebellums. The brain controls all modules in the system and coordinates their work. The framework of the robot allows us to carry out different kinds of robotics research in an environment that can be shared and inherited over generations. Then we discuss the path planning method for the robot based on ant colony algorithm. The mathematical model is established and the algorithm is achieved with the Starlogo simulating environment. The simulation result shows that it has strong robustness and eligible pathfinding efficiency.

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仿人机器人目前已成为机器人领域的研究热点问题之一。本文对仿人机器人目前的发展现状进行了综述,介绍了腰部机构在仿人机器人的作用以及具有不同结构特点的腰部机构。介绍了一种新型的两个自由度的并联差动驱动的腰部机构,并进行了运动学分析及PID控制下的响应特性分析。实验结果表明,该机构具有较快的响应速度和较好稳态精度。

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结合智能机器人多传感器实验平台的研制工作 ,系统介绍了其图像伺服子系统的工作原理、系统构成以及实现方案 ,涉及图像处理、机器视觉和机器人跟踪控制等相关内容 ,并讨论了物体自动识别和抓取过程中需要注意的一些问题 .

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论述了基于Internet的力反馈技术及其相关技术的发展和研究意义 ,综合机器人遥操作控制领域的理论方法 ,结合多媒体技术的最新发展 ,构建了一种基于事件的系统结构及其设计方法 .基于该方法 ,分析了系统的可靠性、稳定性及力媒体传输的透明性 ,并设计了一个基于Internet的力反馈技术的系统实例

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仿人机器人是研究人类智能的高级平台,是综合多种学科的复杂智能机械,其研制和开发涉及到各学科、多方面问题,目前已成为机器人领域的研究热点问题之一.本文对仿人机器人目前的发展现状进行了综述,分析了多种仿人机器人的自由度分布,介绍了具有不同结构特点的腰机构,分析了腰关节在仿人机器人的稳定动态步行、全身协调运动及有情感步行等方面的重要作用.本文还指出了仿人机器人目前的主要研究方向.

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对视觉伺服进行了综述性的介绍,系统地介绍了机器人视觉伺服控制的发展历史以及现状·从控制模型给出了视觉伺服控制系统的分类·针对两种最基本的分类方式基于位置的视觉伺服和基于图像的视觉伺服进行了重点介绍·对于视觉系统和图像特征的选取问题进行了讨论,此外还对视觉伺服系统的动态过程进行了分析,指出视觉系统的延时是目前伺服控制的研究所面临的最大问题·对未来视觉伺服研究的方向进行了总结·

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文中阐述了超精密加工技术的发展现状及实现方法。通过介绍微机器人技术在超精密加工中的具体应用,论证了微机器人技术在超精密加工及精密工程中的应用价值。

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MEMS是当前研究的一个热点,微机器人对于发展MEMS具有重要意义,也是MEMS的一项不可缺少的内容。微动技术是机器人学理论的一个重要分支,也是发展微机器人及相关微技术的基础。目前,各种新型微驱动器层出不穷,极大地推动了微机器人技术的发展。对于微动原理进行分析,从本质上弄清微动产生的机理,不仅可以丰富机器人学理论,还有可能使微动技术产生质的飞跃。从这一角度出发,对各种微动原理加以详细分析和比较,以期得出有意义的结论。

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系统地回顾了近年来奇异摄动控制技术的发展 ,主要包括线性奇异摄动系统的稳定性分析与镇定、最优控制、H∞ 控制 ,非线性奇异摄动系统的镇定、优化控制和基于积分流形的几何方法 ,以及奇异摄动技术在实际工业 ,例如机器人领域、航天技术领域和工程工业、制造业等中的成功应用 .并指出了这一领域进一步研究的方向

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仿生技术与机器人技术的结合 ,使机器人从结构设计到运动模式的选择都有了新的进展 ,这大大扩大了机器人的应用领域 .本文阐述了仿蛇形机器人的应用背景和研究现状 ,并展望了其未来的发展

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演化移动机器人技术被用来研究移动机器人的适应性行为,它的一大突出特性就是采用了自组织的演化过程,这和传统的机器人技术有很大的差别。本文首先简要介绍了这一技术的基本概念及研究意义,并阐述与传统的一些机器人技术之间的关系;然后介绍了这一技术的主要内容;最后对这一技术中存在的问题进行论述并提出解决途径。