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Finally, the estimation of the maximum allowable interference levels and the SIR levels that allow the interference signal to be considered negligible are obtained by means of simulations in the following analysis.
The effective throughput of the Secondary Users (SU) is formulated as an optimization problem with a constraint on the maximum allowable interference on the primary network.
Furthermore, the maximum allowable interference levels were analytically obtained.
This means that the maximum allowable interference depends on the intended link quality.
In this scenario, a maximum allowable interference level at the primary receiver is defined so that the secondary users (SUs) must take into account this threshold during the transmission in order to adjust their transmit powers.
To maintain the QoS requirements for the primary network, we limit the maximum allowable interference power from the secondary network in the order of the received noise power, i.e., Ith = σ2 (=1).
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Denoting Ī as the maximum average allowable interference at PU, the average interference power constraint can be formulated as T - τ T ∑ i = 1 M γ q 1 P i p i, 1 ≤ Ī. (10).
Presented results proved the correctness of the proposed approach, as the proposed technical solutions guarantee that the assumed maximum level of allowable interference is not exceeded.
Furthermore, the analytical BER functions obtained in this paper are expressed in terms of the maximum allowable signal-to-interference (SIR) levels measured at the input of the WiMAX victim receiver.
In order to take advantage of all the allowable interference, the values of the maximum power that can be allocated to each subcarrier should be updated depending on the left interference.
§ 418.38 Maximum allowable diversion.
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