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Richard Klafter
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Richard D. (Dick) Klafter, one of the early leaders in the field of robotics and automation and the IEEE Robotics and Automation Society, was born on 5 August 1936 and died 11 November 2019. He received an undergraduate degree at MIT, two graduate degrees from Columbia University, and a Ph.D. in Electrical Engineering from the City University of New York (1969).
Matthew Mason
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In this interview, Matt Mason discusses his career in robotics, in particular in compliant motion, force control, and fine motion planning. Outlining his involvement in projects at IBM, MIT, and Carnegie Mellon, he provides insight into the state and evolution of robotics at the time. Describing his current work on manipulation and robotic hands, he comments on the future of robotics at CMU and of the field as a whole.
Tatsuo Arai
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In this interview, Arai discusses his lengthy career in the field of robotics, focusing on his involvement and contributions at the Mechanical Engineering Lab and at Osaka University. Outlining various robotics projects, he comments on the challenges of the field and provides advice for young people interested in robotics as a career.
Terry Fong
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In this interview, Fong discusses his involvement in and contributions to the field of robotics. He recounts his time at MIT, Carnegie Mellon, and NASA Ames, and the research work and projects he completed. He reviews his various robotics collaborations, his involvement with Fourth Planet, Inc. and as director of the robotics group, and his contributions to virtual reality interfaces and Human-Robot Interaction research. Additionally, he reflects on the evolution and challenges of robotics and provides advice to young people interested in the field.
Jean Paul Laumond
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In this interview, Jean Paul Laumond discusses his movement from mathematics to robotics and his career contributions to the field, especially in regards to motion planning and anthropomorphic motion. Describing his involvement at CNRS and in other robotics projects, such as HILARE, he comments on the distinction in perception between the robotics approach and a mathematics one.
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