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The multiplicative decrease of the congestion window is activated when a packet loss is detected.
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d Here, we hypothesize that the multiplicative decrease (MD) feature of the AIMD algorithm enables QoS-Fi to react to the intensive channel variation, e.g., fast channel fluctuation and/or growth of contention level in particular channels.
AIMD in TCP literature represents a congestion control mechanism with a linear growth of congestion window combined with an exponential (multiplicative) decrease in the case of congestion [24].
Thus, in case of consecutive loss, multiplicative decrease reduces the sending rate severely.
With a multiplicative decrease, TCP sets ssthresh to half of the current cwnd each time a loss event occurs.
We compared the impacts of the loss recovery algorithms with the congestion control algorithms, additive increase multiplicative decrease (AIMD), fixed window, and that of Westwood.
We present a model of a network of synchronised sources operating additive increase multiplicative decrease (AIMD) congestion control algorithms.
The additive increase multiplicative decrease (AIMD) algorithm was originally applied in the context of decentralised congestion control in communication networks [49].
In recent years, several more aggressive versions of TCP have been proposed which leave the Additive Increase Multiplicative Decrease (AIMD) paradigm.
Algorithm 3: Multiplicative decrease.
Multiplicative decrease algorithm presented in Algorithm 3 implements (2).
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