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Passive variable compliance for dynamic legged robots / Kevin C. Galloway.
LIBRA TJ001 2010 .G174
Available from offsite location
- Format:
- Book
- Manuscript
- Thesis/Dissertation
- Author/Creator:
- Galloway, Kevin C.
- Language:
- English
- Subjects (All):
- Penn dissertations--Mechanical engineering and applied mechanics.
- Mechanical engineering and applied mechanics--Penn dissertations.
- Local Subjects:
- Penn dissertations--Mechanical engineering and applied mechanics.
- Mechanical engineering and applied mechanics--Penn dissertations.
- Physical Description:
- xviii, 138 pages : color illustrations ; 29 cm
- Production:
- 2010.
- Summary:
- Recent developments in legged robotics have found that constant stiffness passive compliant legs are an effective mechanism for enabling dynamic locomotion. In spite of its success, one of the limitations of this approach is reduced adaptability. The final leg mechanism usually performs optimally for a small range of conditions such as the desired speed, payload, and terrain. For many situations in which a small locomotion system experiences a change in any of these conditions, it is desirable to have a tunable stiffness leg for effective gait control.
- To date, the mechanical complexities of designing usefully robust tunable passive compliance into legs has precluded their implementation on practical running robots. In this thesis we present an overview of tunable stiffness legs, and introduce a simple leg model that captures the spatial compliance of our tunable leg. We present experimental evidence supporting the advantages of tunable stiffness legs, and implement what we believe is the first autonomous dynamic legged robot capable of automatic leg stiffness adjustment. Finally we discuss design objectives, material considerations, and manufacturing methods that lead to robust passive compliant legs.
- Notes:
- Adviser: Mark Yim.
- Thesis (Ph.D. in Mechanical Engineering and Applied Mechanics) -- University of Pennsylvania, 2010.
- Includes bibliographical references.
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