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VoyagerTest.rar
- 移动机器人控制程序:包含串口通信等,面向行为的运动控制。,Mobile robot control program: includes serial communications, behavior-oriented motion control.
MobileRobot
- 实验室AS-RE机器人平台上,在visual c++环境下的移动机器人运动控制程序-AS-RE laboratories on the robot platform, in the visual c++ environment the mobile robot motion control program
MotionWelder1_01
- MotionWelder是免费的动画编辑器-Motion Welder is simple, free, GUI tool with rich user interface for fast and easy creation of image based animation, for java mobile game. It is specially designed to bridge a gap beetween developer and designer.Animation plott
2
- 本文提出了一种新型水下小型爬行视频检测机器人的设计方案,重点解决了结构设计中有关密封方式、电机驱动选型、小型化等问题。在控制方面从轮式爬行移动机器人(WMR)的体系结构出发,重点设计了机器人移动控制系统的硬件、软件平台。 - In view of the Architecture of Wheeled Mobile Robot, this paper emphasizes on the design of hardware and software platform based on
learnVcCodeGame_MoveAround
- 角色的移动: 49 5-2-1、建立鼠标左键按键消息 49 5-2-2、角色定义 50 5-2-3、角色移动 52 5-3、角色的动作变化 53 5-3-1、动作转换函数 53 5-3-2、人物图形规律分析 54 5-3-3、动物图形偏移值 57 5-3-4、在时钟消息中加入角色移动和动作转换 58 -Role-Mobile: 495-2-1, establish the left mouse button button news 495-2-
TestMotion
- 基于MFC的移动机器人运动控制程序,实现基本的运动控制-motion control of Mobile robot bsaed on MFC
voiceMotion
- 基于MFC的移动机器人语音运动控制程序,实现语音控制移动-voice motion control of Mobile robot bsaed on MFC
VoiceMotionClient
- 基于MFC的移动机器人网络语音运动控制客户端程序-network voice motion control of Mobile robot bsaed on MFC
VoiceMotionServer
- 基于MFC的移动机器人网络语音运动控制服务器端程序-network voice motion control of Mobile robot bsaed on MFC
mobi_Detection_Sample
- Mobile C# motion detection example
MATLAB Robotics motion planing
- 移动机器人的一些路径规划一些程序。是关于matlab的(Some Paths for Mobile Robots Some Programs for Mobile Robot Path Planning Some Programs)
危险品探测移动机器人平台的研制
- 危险品探测移动机器人运动控制系统的设计和实现。运动控制系统 能够实现移动机器人平台的运动控制和转向控制,采用经典PID算法和模糊控制相结合的模糊PID控制方法实现了移动机器人运动速度的控制。(The design and implementation of the motion control system of the mobile robot for the detection of dangerous goods. The motion control system can realiz
WPNC07_Wang
- The emergence of personal mobile device with low cost sensors, such as accelerometer and digital compass, has made dead-reckoning (DR) an attractive choice for indoor pedestrian tracking. In this paper, we propose a robust DR pedestrian tracking