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In this case, only n SU 2(s) suffer(s) from forced termination when a PU accesses the channel.
If iN + j = MN and p ′ < p, the following states can transfer to state (i,j,0) with rate ϕ(i − 1,j + n,0) λ p based on (i − 1,j + n,0)→ i,j,0) where 0 ≤ n ≤ N. In this case, only n SU 1(s) suffer(s) from forced termination when a PU accesses the channel.
In this case, j ′ SU 1s and k ′ SU 2s suffer from forced termination when a PU accesses the channel.
Similar(57)
Forced termination of connections during handover and blocked connection initiation are annoying from the perspective of multiservice cellular system users.
Forced termination of a call in progress is more frustrating than blocking a new call.
Probabilities of dropping and blocking for PUs and SUs and forced termination for SUs are investigated.
Forced termination probability for secondary voice users depends on whether prioritized interruption is used or not.
Figures 8 and9 show the blocking and forced termination probabilities of connection requests for type 1 services versus the CMR, respectively.
Previous studies[6] have demonstrated the effect of the level of guard capacity on blocking and forced termination probabilities.
First, the handoff arrival rate increases as the user mobility increases in detrimental of call forced termination probability.
As shown in these figures, the CMR has a significant impact on the blocking and forced termination probabilities.
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CEO of Professional Science Editing for Scientists @ prosciediting.com