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A receiver associates with the transmitter that provides the strongest average received power conditioned that the receiver can be sensed by the transmitter.
The PDF of the total radiated power conditioned to a particular hour of a day can be expressed as f left(P_{R} | h right) = sumlimits_{(n,m,k,l in mathcal{S}} f left(P_{R} | n,m,k,lright) cdot P_{{n,m,k,l}} (h), (44).
Therefore, the PDF of the total radiated power conditioned to a particular hour of a day can be expressed as f left(P_{R} | h right) = sumlimits_{(n,m in mathcal{S}} f left(P_{R} | n,mright P_{n,m} (h), (40).
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The thermal efficiency is 9.35% at this maximum power condition.
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For each case the samples were subjected to uniform power condition and two types of varying power conditions.
Power for the low and high power condition were kept constant, with amplitudes of 2.7 µV and 3.3 µV respectively.
We found the optimal power conditions for each electrode to provide the best uniformity.
Velocity and temperature characteristics under different low power conditions and optimized FMC configuration have been analyzed.
These complications are accentuated during start-up or low power conditions.
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