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In every schedule, bSHR > bWIS> bWKY mean across schedules = 0.61, 0.49, and 0.15 responses per second, respectively).
Moreover, in every schedule, wSHR > wWIS > wWKY (mean across schedules = 2.09, 1.24, and 0.96 responses per second, respectively).
Estimates of wWKY and wWIS increased between epochs in every schedule, but only wWKY preserved its positive correlation with rate of reinforcement.
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A scheduling rule in this context selects a single user/queue to receive service in every scheduling instant.
Suppose that every band-AMC user feedbacks -best CQI reports to the base station in every scheduling interval.
Twenty to 30 min should be used per patient in every scheduled visit to assure a good clinical and human practice.
Overall, nearly at every point on the grid an improvement of at least 20 30% was obtained throughout the year in every scheduled INT1 and INT2 session.
Log and Exp rules used in simulations are similar to the ones introduced in Section 2.1 (see (3)), however, instead of scheduling, one user in every scheduling instant, we can now schedule one user in every RB in the current subframe.
Estimates of bSHR and bWKY increased between epochs in every VI schedule; bWIS remained relatively unchanged.
Estimates of pSHR and pWIS increased between epochs in every VI schedule.
As in the preceding epoch, bSHR > bWIS ≥ bWKY in every VI schedule, and estimates of b also increased with rates of reinforcement, including bWKY.
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