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The combined detection algorithm provides a better probability of detection and consequently a higher spectrum hole utilization.
Conversely, energy detection with W=W min leads to an approximate 100%% (99.67 % from simulation) hole utilization.
The authors study the optimal opportunistic spectrum access problem and formulate it as an optimization problem that the secondary user maximizes spectrum hole utilization under the constraint of collision tolerable level of the primary users.
First, it increases the rate by removing the surface-trapped electrons, hence by lowering the electron-hole recombination rate and increasing the efficiency of hole utilization for reactions such as (OH− + h+ → OH·).
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and maximum spectrum holes utilization is (25).
We define spectrum holes utilization of the channel as.
According to the definition of spectrum holes utilization, we can formulate the spectrum holes utilization as the following expresses that.
It is easily obtained that the maximum spectrum holes utilization is.
Thus, maximizing spectrum holes utilization is the equivalent of maximizing transmission duration expectation.
According to (B.6) and (B.7), we can obtain that the maximum spectrum holes utilization is.
Our aim is to maximize the spectrum holes utilization under the constraint of collision tolerable level.
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