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Throughput capacity gain factor.
Figure 6 Average cooperative capacity gain comparison between different relay selection schemes.
The curves ZF and SJNR represent the capacity gain obtained from these schemes (Section 4).
Simulation results show that the proposed schemes provide dramatic capacity gain.
Results also showed the influence of the type of beam on the load capacity gain due to the CFRP.
First, we define the capacity gain factor to quantify the throughput capacity improvement induced by directional antennas.
The advantage of using femtocells is the capacity gain derived from minimizing the range at which they are transmitting.
It is found that the capacity gain (extra capacity) is larger when Li2NiO2 is decomposed at a faster rate due to a smaller charge transfer resistance.
As shown in Figure 4, employing proposed PDCCH power control algorithm provides significant capacity gain over baseline performance without using PDCCH power control.
To measure the performance advantages, we define capacity gain as begin{array}{*{20}l} G = (C - C^{text{NF}})/C^{text{NF}}, end{array} (31).
Another observation from Figures 4 and 5 is the capacity gain from packet bundling is not compromised with proposed PDCCH power control.
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