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For simplicity we use the average power factor for indicating the amount of saved power.
The average power factor represents the power required to transmit the data in a given time slot and it is indicated by μ.
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The equation (19) describes the average power saving factor P sav achieved through CSPA scheme.
The indicator of the average performance, the (PF eng (engineering power factor) and (ZT eng (engineering ZT), were showed ∼50% and ∼76% improvement, respectively.
Power factor was calculated by dividing average power from apparent power.
Then the remaining received signals are scaled by a real factor to keep the average power of R to be.
I is the importance factor that we give to average power constraint, through which we can prevent the continuous growth of the virtual power queues and consequently, we can meet the average power constraints in shorter time.
The average power is The cos ϕ in equation (33) is called the power factor.
The factor μ and β quantifies the average power per bit and data for a given time slot respectively.
Such a diversity order is evaluated by determining the power factor of ρ in the asymptotic average BER expressions.
The capacity factor is a percentage that represents the average power output of a plant.
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CEO of Professional Science Editing for Scientists @ prosciediting.com