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检索条件"机构=Institute for Real-Time Computer Control Systems and Robotics Faculty for Informatics"
41 条 记 录,以下是11-20 订阅
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Object manipulation with dextrous multi-finger hands: improved computation method
Object manipulation with dextrous multi-finger hands: improv...
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IEEE International Workshop on Intelligent Robots and systems (IROS)
作者: G. Wohlke Institute for Real-Time Computer Control Systems and Robotics Faculty for Informatics University of Karlsruhe Karlsruhe Germany
This paper deals with the two fundamental problems that occur when objects are manipulated with multi-finger robot hands: the determination of the joint motions to perform a manipulation according to a given object tr... 详细信息
来源: 评论
Requirements analysis for real-time automation projects
Requirements analysis for real-time automation projects
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International Conference on Software Engineering (ICSE)
作者: M. Hagemann Faculty for Informatics Institute of Real-Time Computer Control Systems and Robotics University of Karlsruhe Karlsruhe Germany
A formal language for specifying and analyzing requirements is introduced. An integrated set of tools support the transition from ideas to a requirements specification. The system is implemented on an IBM PC. The spec... 详细信息
来源: 评论
Decentralized control of distributed intelligent robots and subsystems
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Annual Review in Automatic Programming 1994年 第C期19卷 281-286页
作者: Laengle, Th Lueth, T.C University of Karlsruhe Faculty for Informatics Institute for Real-Time Computer Systems and Robotics 76128 Karlsruhe Prof. Dr.-Ing. U Rembold Prof. Dr.- Ing. R. Dillmann Germany
In a distributed robot system, asynchronous and synchronous communication between the system components is necessary to guarantee problem soliving capability in realtime. On that account, the distributed control archi... 详细信息
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Neural-fuzzy force control using a TAI-lorable parallel computer concept
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IFAC Proceedings Volumes 1994年 第14期27卷 151-156页
作者: S. Fatikow B. Magnussen T. Doersam University of Karlsruhe Faculty for Informatics Institute for Real-Time Computer Systems and Robotics Kaiserstr. 12 76128 Karlsruhe Germany
In this paper a new control system for the intelligent force control of multifingered robot grips is presented. The multi-level system architecture combines both fuzzy-based and a neural-based control algorithms. Afte... 详细信息
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An automated microrobot-based desktop station for micro assembly and handling of micro-objects
An automated microrobot-based desktop station for micro asse...
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International Conference on Emerging Technologies and Factory Automation (ETFA)
作者: S. Fatikow U. Rembold Institute for Real-Time Computer Systems and Robotics Faculty for Informatics University of Karlsruhe Karlsruhe Germany
One of the main problems of present-day microsystem technology (MST) is the assembly of a whole microsystem from different micro-components. This paper presents an automated micromanipulation desktop station the main ... 详细信息
来源: 评论
A simulation-based grasp planning system for multifinger robot hands
A simulation-based grasp planning system for multifinger rob...
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IEEE International Symposium on Intelligent control (ISIC)
作者: G. Wohlke Institute for Real-Time Computer Systems and Robotics Faculty for Informatics University of Karlsruhe Karlsruhe Germany
The development of an advanced planning environment is described, which is especially tailored for the programming and simulating of complex assembly operations with multifinger robot hands. A new geometric-mechanic a... 详细信息
来源: 评论
A neuro-fuzzy control approach for intelligent microrobots
A neuro-fuzzy control approach for intelligent microrobots
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IEEE International Conference on systems, Man and Cybernetics
作者: S. Fatikow G. Wohlke Institute for Real-Time Computer Systems and Robotics Faculty for Informatics University of Karlsruhe Karlsruhe Germany
Presents a neuro-fuzzy control approach for intelligent microrobots. Typical tasks of such industrial or medical robots are both exploration and fine manipulation, what demands task planning and motion/force control c... 详细信息
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Intelligent robot hand control system using a tailorable parallel computer concept
Intelligent robot hand control system using a tailorable par...
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IEEE International Workshop on Intelligent Robots and systems (IROS)
作者: S. Fatikow B. Magnussen Th. Dorsam Institute for Real Time Computer Systems and Robotics Faculty for Informatics University of Karlsruhe Karlsruhe Germany
Presents a control system for the intelligent force control of multifingered robot grips. The multilevel system architecture combines both a fuzzy-based adaptation level and a neural-based one with a conventional PID-... 详细信息
来源: 评论
Fuzzy-based grasp-force-adaptation for multifingered robot hands
Fuzzy-based grasp-force-adaptation for multifingered robot h...
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IEEE International Conference on Fuzzy systems (FUZZ-IEEE)
作者: T. Dorsam S. Fatikow I. Streit Institute for Real-Time Computer Systems awl Robotics Faculty for Informatics University of Karlsruhe Karlsruhe Germany
A fuzzy logic approach for the online grasp-force-adaptation, which can be used for the control of fine manipulating with a multifingered robot hand, will be presented in this paper. The kernel of this approach consis... 详细信息
来源: 评论
Stability Analysis and Performance Evaluation of Delayed Bilateral Telerobotic systems over a Lossy Communication Channel
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Journal of systems Science & Complexity 2021年 第1期34卷 157-179页
作者: BAKHSHI Ali ALFI Alireza TALEBI Heidar Ali SOURATGAR Amir Aboulfazl YOUSEFI Mahdi Faculty of Electrical and Robotic Engineering Shahrood University of TechnologyShahrood 36199-95161Iran Power Plants Control Systems Technology Development Plan Department of monitoring and ControlNiroo Research InstituteTehran 14665-517Iran Real-Time and Robotics system Laboratory Faculty of Electrical EngineeringAmirkabir University of TechnologyHafez AvenueTehran 15914Iran Electrical and Computer Engineering Department The University of British Columbia2385East MallVan couverBC V6T 1Z4Canada
The focus of this paper is to address a novel control technique for stability and transparency analysis of bilateral telerobotic systems in the presence of data loss and time delay in the communication channel. Differ... 详细信息
来源: 评论