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The CBS protocol uses broadcasting rather than pairwise communication to accomplish synchronization.
Secure pairwise communication is an important issue on which a lot of other sensor network services are based.
Keys for securing pairwise communication among nodes are achieved by key establishment process after deployment.
Therefore establishing a shared key for pairwise communication becomes a central problem for sensor network security research.
This pairwise communication sends which vertices have been completed (called found parents), so that the next processor will have the knowledge to skip examining over them.
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In addition to the CUEs, there are other single-antenna users that bypass the BS and communicate pairwise with each other using a D2D communication mode.
Recently, incorporating pairwise keys for secure communication amongst sensor nodes in the heterogeneous WSNs has been considered in [12, 13].
Now we analyze the required number of hops to establish a pairwise key and the communication overhead distributed on each hop through simulations.
Are long-range interactions mediated through couplings at a distance, are there networks of simple pairwise interactions that mediate communication at great distances, or are these couplings simply biologically-meaningless false positives [9] [11], [15], [32], [33]?
The sensor nodes use these preloaded keys to generate pairwise keys, which create safe communication channels between neighboring nodes.
The idea of using a pairwise key scheme to secure communication links in WSNs is proposed by Chan et al., [14].
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