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Integrated kinematic control of mobile-manipulator systems

Integrated kinematic control of mobile-manipulator systems
移动机械手系统的集成运动控制
批准号:
312537-2011
负责人:
Nokleby, Scott
金额:
$1.46万
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2012
资助国家:
加拿大
项目状态:
已结题
起止时间:
2012-01-01 至 2013-12-31

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中文摘要
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英文摘要
A mobile manipulator is a system comprised of a robot arm (or manipulator) mounted on a mobile base. Examples of such systems include robot arms mounted on Remotely-Operated Vehicles (ROVs) or remotely operated mining equipment. Such systems offer great advantages in terms of workspace and manipulability compared to fix-mounted robot arms. However, such systems are more difficult to control due to the inherent redundancy of these systems. To position and orient an object in space requires 6-DOF (degrees-of-freedom). Typical mobile manipulators have more than 6-DOF making the control of these systems a challenge. At present, mobile manipulator operators must control both the mobile base and its associated robot manipulator separately, which makes it very challenging for the operator to perform intricate tasks. The objective of this research program is to develop a variety of aids for mobile-manipulator operators to make their jobs more intuitive and less demanding, thus enabling the operators to perform more complex tasks and increase their productivity. Specifically, this research program will develop new optimal kinematic control algorithms for the integrated control of mobile manipulators, create a semi-autonomous tele-operating mode for mobile manipulators, and will develop routines for using haptic devices and virtual fixtures for tele-operating mobile manipulators. These developments will form the basis for advanced robotic systems which will enable real-world users to operate these systems in a user-friendly manner. As the recent oil leak in the Gulf of Mexico has proven, mobile-manipulator systems are playing an increasingly vital role to society. However, as was demonstrated by the difficulties encountered in tele-operating these ROVs at remote depths, there is an opportunity for improved methods of operating mobile-manipulator systems. The results of this research program will contribute to the development of advanced robotic systems for hazardous material handling; undersea exploration, resource extraction, and construction/maintenance; terrestrial mining; manufacturing; and security.
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Autonomous Robotic Aerial Manipulation
Tethered Aerial Manipulator Systems
Tethered Aerial Manipulator Systems
Tethered Aerial Manipulator Systems
国内基金
海外基金
基于kinematic原理的TMT三镜支撑系统关键技术研究
多参考站RTK的系统误差分离方法研究