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Figure 2 Utility as a function of the packet delay.
Average entropy as a function of the packet loss probability.
Figure 16 PHY data throughput as a function of the packet size.
Figure 11 Routing overhead as a function of the packet sending rate (225 nodes).
Figure 8 Delivery ratio as a function of the packet sending rate (225 nodes).
Figure 10 End-to-end delay as a function of the packet sending rate (225 nodes).
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Figure 11 Throughput gain of ZigBee as a function of the number of multiple packets.
In this sense, a strategy for selecting the packet type as a function of the SNR is described.
Figure 8 shows the number of aggregated packets as a function of the number of UEs.
(b) Packet loss probability as a function of the link loss probability.
In Figure 6(b), the packet error rate (PER) is shown as a function of the node orientation.
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as a function of the bias
as a function of the incident
as a function of the transmission
as a function of the log
as a function of the design
as a function of the target
as a function of the network
as a function of the percentage
as a function of the age
as a function of the reaction
as a function of the mass
as a function of the pressure
as a function of the state
as a function of the thickness
as a function of the population
as a function of the temperature
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