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A Relay Enhanced Cell (REC) is formed out of a BS together with its associated RSs. Figure 1 RSs within the cellular network, the control plane.
The average differences between Int1 and TP1, Int2 and TP2 are 10.5 and 11.3, respectively, while that between Int_dif and TP_dif is only 0.8. Figure 1 RSS measurements of different devices from different APs.
Using models 2 and 3 made it possible to perform a Fisher's test for QTL-by-genetic background interaction, F test = (RS S(2 ) − RSS (3 ) ) / (F − (K − 1 ) ) RSS (3 ) / (N − 2 F − (K − 1 ) C ), where N, P, and K were as previously defined and C was the number of cofactor QTL treated as connected.
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N-1 RSs transmit a known signal and collect data generated according to the echo.
The Pfor is the summation of power consumed at every relay node for forwarding the information from the N-1 RSs.
Local decisions made at N-1 RSs are transmitted over pass-loss fading channels to the fusion center through several relay nodes.
N-1 RSs individually radiates signals, receives echoes, and makes local decision whether there are targets in the monitoring area or not.
These N-1 RSs also transmit their independent decision to the fusion center (the remaining one node) through a number of relay nodes (selected from these N-1 sensors).
In view of these N-1 RSs in our area of interest, the average energy consumption of every RS for transmitting is derived by E ave = E bt N - 1. (20).
The BSs take T≥1 RSS measurements (z_{j}in mathbb {R}^{{T}}), j∈{1,…,J}, and transmit them to the central unit, that collects them into the global measurement vector z = left(begin{array}{c} z_{1} z_{2} vdots z_{J} end{array}right)in mathbb{R}^{{T}J}.
Fig. 3 RSS fluctuation over time.
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