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Figure 17 Comparison of handover probability.
where Ph,mm, Ph,mf, Ph,ff, and Ph,fm are the macrocell-to-macrocell handover probability, macrocell-to-femtocell handover probability, femtocell-to-femtocell handover probability, and femtocell-to-macrocell handover probability, respectively.
This decision is controlled by a handover probability (HO_P), which we varied from 0%to15%5%.
In addition, the femtocell-to-macrocell handover probability is very high.
As seen from Fig. 7, the algorithm would not allow the handover probability to exceed a certain value.
In Figure11, inter-domain mobility rate ϕ has different influence on session arrival rate and inter-domain handover probability in Equations (10) and (11).
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With an increase in the number of deployed femtocells, the femtocell-to-femtocell handover and macrocell-to-femtocell handover probabilities are significantly increased.
Figure 17 shows the effect of different handover probabilities with an increase in the number of deployed femtocells within a macrocellular network coverage.
The handover probabilities from a femtocell and to a femtocell in integrated femtocell/macrocell networks also depend on the density of femtocells and the average size of femtocell coverage areas.
Table 1 Inference engine fuzzy rules Achievable blocking Expected handover Architecture probability probability score High High Low High Moderate Low High Low High Moderate High Low Moderate Moderate Moderate Moderate Low High Low High Low Low Moderate High Low Low High.
The red and green curves denote the handover success probability of hard handover scheme and that of the proposal respectively.
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