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The simulation results show that the synchronization mechanism is effective.
Note that the synchronization scheme is activated on t = 500.
The results also show that the synchronization region widens when the load resistance increases.
Numerical simulations are presented to verify that the synchronization can be achieved by using this ASMC.
A criterion is proposed to ensure that the synchronization error system is reliably passive.
The solvability conditions reveal that the synchronization problem is primarily solvable for two classes of agents.
We see that the synchronization errors converge to zero under the above conditions.
Meaning that the synchronization problem is not considered in the initialization stage.
It follows from Lemma 2 that the synchronization error system is asymptotically stable.
We have also shown that the synchronization service achieves minimal pairwise accuracy of 8.46 μ s.
From this analysis, we may conclude that the synchronization mechanism may be adequate for our purposes.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com