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Titlebook: Glazed Panel Construction with Human-Robot Cooperation; Seungyeol Lee Book 2011 The Editor(s) (if applicable) and The Author(s), under exc

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Trends in Higher Education among the PAMI,ters. Also, we structured the whole human–robot cooperative control system by separating into the human impedance control and the experimental impedance control with an inner motion control loop. The experimental contents can be categorized into four areas. We investigated the influences to the syst
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https://doi.org/10.1057/9781137548412irst, considering the environment where the system is used, the required specification about the target building that is to be heavy glazed ceiling panels should be constructed. Then, the existing construction equipment and construction process for installing heavy glazed ceiling panels are analyzed
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Jianmin Gu,Xueping Li,Lihua Wangdular form to compose its basic system. Also, the hardware and software necessary for each area of application were composed of additional modules and combined with the robot’s basic system. The suggested prototype can execute particular operations in various areas such as construction, national def
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Measures and Metrics and Academic Labour,ges of the proposed robot is the glazed ceiling panel installing by human–robot cooperative manipulation. A HRI device and the vacuum suction device combined with the multi-DOF manipulator are included in this work. Designing of a robotized construction process and field test using the robot is appl
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2191-5768 roller. The human-robot cooperative system can cope with various and construction environments through real-time interaction with a human, robot and constructio978-1-4614-1417-9978-1-4614-1418-6Series ISSN 2191-5768 Series E-ISSN 2191-5776
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