• The most important character of this flying robot is that it doesn't need a control from faraway places.

    种飞行机器人最重要的特点是它不需要远程操纵装置。

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  • But what really makes Linux shine in this environment is the ability to simplify the environment to make robot control system design accessible to anyone through higher level languages such as Python.

    但是真正使得Linux这个环境大放异彩它对环境简化能力,从而使得所有人都可以通过Python之类高级语言进行机器人控制系统设计

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  • Its applications range from forecast of energy source and finance to analysis of picture, text and voice, and robot control and satellite survey.

    应用范围能源财政预测图像文本语音分析以及机器人控制卫星监测等

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  • Does the robot control system can refer to.

    机器人控制系统可以参考

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  • The theory of artificial Neural Network and its application in space robot control are studied in this thesis.

    论文人工神经网络理论及其空间机器人系统控制中的应用了研究。

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  • In this paper, the method integrating CPV350 inverter welding machine to arc welding robot control system is introduced.

    介绍了CPV350逆变电焊机弧焊机器人控制系统的连接方法

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  • A kind of robot control system for the production line of food packaging is introduced in this paper.

    本文介绍食品包装生产线机器人控制系统

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  • Camera calibration is a basic and crucial problem in the field of robot control with vision feedback.

    视觉反馈机器人控制中,摄像机标定一个基本的、重要性问题

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  • The controller is the core of robot control.

    控制器机器人控制核心

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  • AN arc welding robot control system based on CAN bus is introduced.

    介绍了一个基于CAN总线的弧焊机器人控制系统

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  • The running results indicate that this project has met the needs of the item of the robot control laboratory.

    运行结果表明课题研制达到了机器人控制实验项目设计要求

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  • The navigation technique of robot control using artificial potential fields is based on fuzzy logic and stability is guaranteed by Lyapunov theory.

    利用人工势能机器人导航控制技术模糊控制实现,系统的稳定性李雅普·诺夫原理保证

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  • The control model and the path tracing method proposed provide the theory basis for the design of the tracked robot control system.

    该文提出控制系统模型路径跟踪方法履带式机器人控制系统设计提供理论依据。

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  • This paper presents a rehabilitation robot control technique based on brain-computer interface (BCI).

    本文介绍利用脑机接口控制康复机器人方法

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  • The wireless control is finally implemented in robot control by theory analyzing? Making appropriate protocol and plenty of experiment.

    通过理论分析制定正确通信协议结合大量试验,最终实现移动机器人无线控制

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  • Robot action planning is one of the topics associated with intelligent robot control systems that are especially important and very complex.

    机器人动作规划智能机器人控制系统一个特别重要而又十分复杂的研究课题。

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  • Dynamic calibration plays a very important role in robot control.

    动力学标定机器人控制中起非常重要作用

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  • Function requirement of existing mobile robot control system is analyzed. Framework and realization mechanism of data bus pattern is described.

    分析了已有移动机器人平台控制系统功能需求阐述了总线模式结构实现机制

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  • The manipulator track is the difficulty in the robot control.

    机械手的轨迹跟踪机器人控制系统中的一个难点

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  • A engraving robot control system based on CAN bus is introduced.

    这里介绍了一个基于CAN总线的雕刻机器人控制系统

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  • Neuron controller with nonlinear gain is applied in robot control system. It can overcomes some influence that the system inherent variable inertia and nonlinear, raises dynamic performance index.

    把具有增益非线性神经元应用机器人控制系统中,克服了机器人系统固有的惯性、非线性等因素的影响,提高了系统的动态性能。

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  • Based on the platform of a mobile scout robot, a novel robot control method using GPRS communication system is described.

    移动探察机器人平台介绍了一种利用GPRS通讯系统控制机器人的方法

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  • The Internet-based robot is a popular topic in robot control research recently.

    网络机器人目前机器人控制研究领域的前沿课题。

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  • The fuzzy controller was tested for a mobile robot control and the results indicated that the control arithmetic satisfied the requirements of a mobile robot in greenhouse.

    利用单片机作为控制核心,研制了一种模糊控制器移动机器人模型上进行实验

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  • The nonlinear characteristics in the unicycle robot dynamic system make the robot control much more difficult.

    为了实现对于独轮车机器人非线性系统姿态控制

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  • These tasks range from design of the mechanics, sensor system, energy system, computer architecture of the robot, control and navigation algorithms to an adequate operating system and user interface.

    这些业务范围设计力学传感器系统能源系统、计算机体系结构机器人控制导航算法适当操作系统和用户界面

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  • Hardware platform of embedded robot control system is developed using embedded 32-bit processor LPC2136 based on ARM7 that is the center control system, which supports real time simulation.

    支持实时仿真32位嵌入式arm7处理器LPC 2136为控制核心,设计开发嵌入式机器人控制系统硬件平台

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  • The results show that this method can improve the control and mechanical system design, and provide theoretical bases for robot control and performance improvement.

    仿真结果表明仿真方法可以有效提高控制系统机械系统的设计效率,实现机器人的控制及性能改进提供了理论依据

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  • And in accordance with the principles of its composition and its command system, designed humanoid robot control system software.

    根据组成原理及其指令系统设计了人形机器人控制系统的软件

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  • The paper presents a fuzzy neural networks hybrid control of biped robot control problem.

    针对机器人控制问题,提出了一种基于模糊神经网络混杂控制方法。

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