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Experiments for "Time-varying formation tracking for second order multi-agent systems: an experimental approach for wheeled robots"

<p>In this paper, a time-varying formation tracking protocol for second order Multi-Agent 1<br> Systems (MASs) is presented. The time-varying formation considers translation, rotation and scaling 2<br> of the geometric pattern that defines the formation. The control law is simple yet effective, and is 3<br> composed of a trajectory tracking control and a consensus control that considers position and velocity 4<br> feedback of the connected agents in the MAS. The closed-loop system is asymptotically stable, and 5<br> this is proved using the Gershgoring&rsquo;s disk theorem. The performance of the protocol is extensively 6<br> tested in experiments using a dynamic extension of the differential-drive robot model. The protocol 7<br> is tested for different communication topologies and also deals with switching topologies. The 8<br> proposed protocol presents good performance to both time-varying formation and topology changes. 9<br> Moreover, a comparison with an existing controller and with only trajectory tracking control is 10<br> provided, showing that the proposed protocol preserves in a better way the formation for all the 11<br> tested topologies.</p>

ShareScore

12/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
4
Access
0
Reuse readiness
0
Engagement
4