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This is how we can use this robot for research purpose in different field by further manipulation in programming it can use accordingly.
Finally, we apply this framework to make progress on the new version of the UJI Librarian Robot, making a great step forward in the way the robot manipulates books.
This makes it possible for non-experts to program the robot in an intuitive way, without going through rigorous training in robot programming.
But while humanoid design may move the role of the robot to one that becomes potentially more effective in some environments, it may complicate emotional and ethical issues in terms of how human team members view the robot – as an extension of self, an external tool, a team member, a pet, or other entity.
In our assessment, the proposed robot mechanism can realize the role of a functional medical robot for therapy and diagnosis.
Our results also show how ASEBA enables advanced behavior in demanding environments using a complex robot, such as the handbot robot climbing a shelf to retrieve a book.
Furthermore, service robot programming environments is a novel area of research, particularly when it comes to expressing what the robot does in a declarative syntax.
The applications of ROBSEL show that ROBSEL is a useful, practical and easy to use robot selection tool and improves robot selection decisions in the companies.
This robot system is validated and characterized in real game situations with humanoid robot players.