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In Figure 7, the minimum required transmit power for an outdoor scenario is shown as a function of the distance.
Minimum required transmit power is determined by adjusting the power level until the targeted SINR at the SU receiver is satisfied.
In the same section, the minimum required transmit power, over a given link, in the absence of any interfering node is computed in both indoor and outdoor environments.
The new minimum required transmit power is obtained by multiplying present minimum required transmit power with the transmit power control ratio R TPC as follows: begin{array}rcl@ P_{text{Tx}_text{SU}_text{R}}left(t+1 right) = P_{text{Tx}_text{SU}_text{R}} left(t right) R_{text{TPC}}.
It can be observed that, unlinke an indoor scenario, in an outdoor scenario, the minimum required transmit power is an increasing function of the distance (in fact, there are no reflections from surrounding objects).
In Figure 6, the minimum required transmit power P0 for a successful link transmission in an indoor scenario with a ZigBee equipment (B = 5 MHz, θ = 5 dB), operating at T = 300 K and with log-normal fading characterized by σdB = 8 dB, is shown as a function of the distance, considering various values of the required link probability of success of P th.
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Interference leakage to PUs always below a threshold, each SU must achieve the minimum required data rate, total transmit power of all SUs must be below the available power at base station, no more than one SU is allocated to each subchannel.
Fig. 5 Simulation 4. Average minimum harvested power per ER versus number of transmit antennas N. Figure 6 depicted the average total transmit power versus minimum required SINR of IR.
Fig. 6 Simulation 5. Average total transmit power versus minimum required SINR of IR, Γ I.
In order to minimize the multiple access interference, users transmit with the minimum required power to meet the required threshold.
If the data frame is received successfully, the multicast group leader transmits an ACK frame after a short interframe space (SIFS) to the MT. Other multicast group nodes do not transmit an ACK frame to the MT. Only multicast group nodes that are not satisfied with the minimum required QoS (i.e., required frame error rate) transmit NACK frames to the MT after SIFS.
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