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Using a 4D Markovian model, we compute the steady state of the system and derive the average throughput and the expected delay as well.
Next, we derive the average achievable throughput for each scheme.
First, we derive the average power of the input signal.
In this section we discuss and derive the average SNR for AF-SC protocol.
We derive the average throughput when node S selects 2/4-QAM in step 1.
In this section, we derive the average multihop packet transmission delay of the proposed scheduling scheme.
In the next sections, we derive the average BERs for two scenarios under i.i.d. and i.n.d.n.d
All combinations of measurements have been considered to derive the average error.
We derive the average sum rate of cellular network and D2D network analytically.
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A volume averaging technique is used to derive the averaged transport equations in the limit of thin electrical double layers.
As a similar process to the stochastic differential equation case, we can derive the averaging principle for SDE with delay.
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