Full metadata
Title
Trajectory Modeling, Estimation and Interception of a Thrown Ball using a Robotic Ground Vehicle
Description
Toward the ambitious long-term goal of developing a robotic circus, this thesis addresses key steps toward the development of a ground robot that can catch a ball. Toward this end, we examine nonlinear quadratic drag trajectories for a tossed ball. Relevant least square error fits are provided. It is also shown how a Kalman filter and Extended Kalman filter can be used to generate estimates for the ball trajectory.
Several simple ball intercept policies are examined. This includes open loop and closed loop policies. It is also shown how a low-cost differential-drive research grade robot can be built, modeled and controlled. Directions for developing more complex xy planar intercept policies are also briefly discussed. In short, the thesis establishes a foundation for future work on developing a practical ball catching robot.
Several simple ball intercept policies are examined. This includes open loop and closed loop policies. It is also shown how a low-cost differential-drive research grade robot can be built, modeled and controlled. Directions for developing more complex xy planar intercept policies are also briefly discussed. In short, the thesis establishes a foundation for future work on developing a practical ball catching robot.
Date Created
2018
Contributors
- DAS, NIRANGKUSH (Author)
- Rodriguez, Armando A (Thesis advisor)
- Berman, Spring M (Thesis advisor)
- Artemiadis, Panagiotis (Committee member)
- Arizona State University (Publisher)
Topical Subject
Resource Type
Extent
98 pages
Language
eng
Copyright Statement
In Copyright
Primary Member of
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.51733
Level of coding
minimal
Note
Masters Thesis Mechanical Engineering 2018
System Created
- 2019-02-01 07:04:53
System Modified
- 2021-08-26 09:47:01
- 3 years 3 months ago
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