Impact of correlated mobility on delay–throughput performance in mobile ad hoc networks
We extend the analysis of the scaling laws of wireless ad hoc networks to the case of
correlated nodes movements, which are commonly found in real mobility processes. We
consider a simple version of the Reference Point Group Mobility model, in which nodes
belonging to the same group are constrained to lie in a disc area, whose center moves
uniformly across the network according to the iid model. We assume fast mobility conditions
and take as a primary goal the maximization of per-node throughput. We discover that …
correlated nodes movements, which are commonly found in real mobility processes. We
consider a simple version of the Reference Point Group Mobility model, in which nodes
belonging to the same group are constrained to lie in a disc area, whose center moves
uniformly across the network according to the iid model. We assume fast mobility conditions
and take as a primary goal the maximization of per-node throughput. We discover that …
Impact of correlated mobility on delay-throughput performance in mobile ad-hoc networks
We extend the analysis of the scaling laws of wireless ad hoc networks to the case of
correlated nodes movements, which are commonly found in real mobility processes. We
consider a simple version of the Reference Point Group Mobility model, in which nodes
belonging to the same group are constrained to lie in a disc area, whose center moves
uniformly across the network according to the iid model. We assume fast mobility conditions,
and take as primary goal the maximization of per-node throughput. We discover that …
correlated nodes movements, which are commonly found in real mobility processes. We
consider a simple version of the Reference Point Group Mobility model, in which nodes
belonging to the same group are constrained to lie in a disc area, whose center moves
uniformly across the network according to the iid model. We assume fast mobility conditions,
and take as primary goal the maximization of per-node throughput. We discover that …
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