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We present a benchmark scheme which aims at minimum outage probability provisioning, and a compromising scheme which aims at resilient provisioning with minimum power consumption.
The proposed on‐off control protocol guarantees the minimum outage probability between those of the AF relaying and RT schemes.
In that paper, minimum outage probability expressions are derived and comparisons with the DF-FD relaying are also presented.
However, for a given algorithm, the graphs can and should be used to determine the minimum outage probability obtainable for a given average power and vice versa.
In [8], power allocation and relay selection schemes were proposed to achieve the maximum SE and minimum outage probability for multiple relay-assisted cooperative networks.
We are interested in finding an index mapping scheme that achieves the minimum outage probability subject to a long-term average power constraint.
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From Figure8, it can be observed that when the value of the normalized radius is about 2/3, the minimum system outage probability can be derived for both the two schemes.
We can see that the minimum of the outage probability under both the schemes lies in the range of α between 0.4 and 0.5, regardless of the values of ϱ and channel parameters.
The minimum sum of the outage probability and the intercept probability versus the transmission power and the training number is plotted in Figure 5.
Figures 4 and 5 show the average network throughput and outage probability versus different minimum rate requirements of multicast traffic.
Figures 2 and 3 show the average network throughput and outage probability versus different minimum rate requirements of unicast traffic.
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