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In Figure 5(a), the expectation of the maximal throughput for different is plotted, as obtained through the analytical model and simulation.
In [12], the authors analyzed the system maximal throughput for the time switching and power splitting protocols in AF relaying networks.
The "combined" constellations (N b >0, N s >0) provide the maximal throughput (for sufficiently high γ BC) in relatively large regions of γ MAC, γ HSI (see the dominant throughput regions of (left (N_{b}^{mathrm {I}},N_{ss}^{mathrm {I}}right)=(2,1)) for γ BC={20 dB, 25 dB}).
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As shown in [17], the maximal throughput of each channel for the IEEE 802.11 DCF standard is only about 0.82 Mb/s when available bandwidth is 1 Mbps.
Fig. 9 The maximal throughput of secondary system w.r.t. the transmission rate R 1 for different d SU,SR.
Figure 9 shows the maximal throughput of secondary system w.r.t. the transmission rate R 1 for different d SU,SR.
Figure 8 shows the maximal throughput of secondary system w.r.t. the transmission power of SU for different transmission rates R 1.
As a result, the maximal throughput of secondary system will gradually approach the value of R 1. Fig. 8 The maximal throughput of secondary system w.r.t. the transmission power of the SU for different transmission rates R 1.
Fig. 7 The maximal throughput of secondary system w.r.t.
Figure 10 shows the maximal throughput of secondary system w.r.t.
Given the EH rate, the transmission probability is analyzed in [16] for each mobile terminal considering its battery capacity, based on which the maximal throughput of the wireless network is derived.
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