Exact(7)
Generally, as the utilization of the queue increases, the average delay per packet will increase.
According to deficit round robin [20], the TXOP increases as the number of packets in a queue increases.
To truly understand why variance creates much of the congestion and chaos, thus decreasing airport throughput/capacity, airlines must work to understand queuing theory, i.e., time in queue increases exponentially as demand approaches capacity with increasing level of flow variance.
In (7), the probability of decoding decreases when the number of messages in the outgoing queue increases favoring in this case the sending activity.
That is reasonable as the fact that λ1 is assumed to be the departure rate of the queue, and as the departure rate of the queue increases, the average delay in the queue decreases.
This approximation assumes that the probability of having successively greater numbers of people in a queue decays exponentially as the length of the queue increases.
Similar(53)
For some the physical layout of the clinic meant they were aware of what was happening to other women ahead of them in the queue; increasing their anxiety as they waited.
For moderate traffic arrival rates, the variance of per flow waiting times in the queues increases and, consequently, the delay Jain's fairness index decreases.
The waiting time of the packets in the queue continuously increases, subsequently increasing the delay.
Due to their poor resource utilization, the packets spend more time in the transmission queues, increasing the delivery delay.
Long queues increasing tension amongst patients and encouraging clinicians to take shortcuts to 'clear the queue'.
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Justyna Jupowicz-Kozak
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