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The population size will be defined in a normalized sense.
The most educated guess needs to take into account prevailing market multiples and a "normalized" sense of the rate of earnings growth.
We attribute possible decrease in the normalized delay to the fact that when there are more packets to transmit, the transmitter has more options to choose from and hence, encounters delays less often in a normalized sense.
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Fig. 8 Impact of varying number of cooperating sensing devices N on a normalized (varepsilon = frac {varepsilon }{D_{t}}), and b fraction of time used for spectrum sensing (i.e., normalized sensing time (=frac {T_{s}}{T_{f}})).
Fig. 7 Effects of different total number of in-band channels I on a normalized (varepsilon = frac {varepsilon }{D_{t}}), and b fraction of time used for spectrum sensing (i.e., normalized sensing time (=frac {T_{s}}{T_{f}})).
Fig. 15 Simulation results of the total number of active channels I versus: a normalized (varepsilon = frac {varepsilon }{D_{t}}), and b fraction of time used for spectrum sensing (i.e., normalized sensing time (=frac {T_{s}}{T_{f}})).
Fig. 9 Effects of different cluster's throughput demand, D t on a normalized (varepsilon = frac {varepsilon }{D_{t}}), b number of in-band channels I used, and c fraction of time used for spectrum sensing (i.e., normalized sensing time (=frac {T_{s}}{T_{f}})).
The performance is measured in term of a normalized (varepsilon = frac {varepsilon }{D_{t}}), b number of active in-band channels I used, and c fraction of time used for spectrum sensing (i.e., normalized sensing time (=frac {T_{s}}{T_{f}})), with SNR p fixed at −7 dB Fig. 12 P f versus T s for different SNR p with P d fixed at 0.9.
From Fig. 6, the optimal points of the conventional and the proposed TD-CRHAN are taken out and the normalized ε is plotted in Fig. 7 a, and the corresponding normalized sensing time T s (i.e., fraction of time used for spectrum sensing in a frame) is plotted in Fig. 7 b.
Fig. 13 Simulation results on the effects of using different total number of in-band channels I on a normalized (varepsilon = frac {varepsilon }{D_{t}}), and b fraction of time used for spectrum sensing (i.e., normalized sensing time (=frac {T_{s}}{T_{f}})).
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