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(c) Processing of datagrams at PHY layer.
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This model is characterized by the following parameters: number of packet calls per session, reading time between packet calls, number of datagrams per packet call, interarrival time between datagrams within a packet call, and datagram size.
The information visible by observer nodes, which are deployed in the network to monitor the exchange of these datagrams between intermediate nodes, is in the form of datagrams.
The probability of datagrams collisions is reduced to its lowest value.
The network observation of the series of datagrams π, which is sent by the attacker to remotely execute actions in ω rem, is computed based on the observation of candidate datagrams.
Typically, only the identities of intermediate nodes which are in the coverage of the observer node could be determined as the observer is monitoring the forwarding of datagrams.
Let ω be an executed attack scenario, and π be the series of datagrams sent by the attacker to remotely execute actions in ωrem.
Due to the dynamic aspect of the network topology the set of datagrams, which are sent by the attacker to remotely execute actions, may follow different routing paths.
Obviously, as outlined previously, network observers may not capture the same packets and every collected, related to the same sent series of datagrams π, will be different from one observer to another.
Let π be the series of datagrams sent to remotely execute actions within some attack scenario, where is the series of datagarms in π which were captured by some observer j.
The processing of information underwent revolutionary change.
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