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During the data analyzes SPSS (Statistical Packet for Social Sciences) computer program was used.
The statistical evaluation was performed using the SPSS 15.0 statistical packet software for Windows [ 27].
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The statistical analyses were executed with the statistics packet SPSS/PC 13.0 (SPSS Inc., Chicago, IL, USA).
IBM SPSS 15.0 for Windows statistics packet programme was used for the statistical analysis of our research data.
Data were further analyzed using non-parametric statistical methods (SPSS, Statistical Package for the Social Science, Software Packets for Windows, Version 18 and GraphPad PRISM® for Windows, Version 5.0) Kruskal-Wallis, Wilcoxon and Dunn's multiple comparisons test were used.
Towards this end, we impose the following statistical assumptions on packet transmission times and on timeouts: (1) transmission time of each packet is exponentially distributed with mean 1, and (2) each timeout period at node i is exponentially distributed with mean.
We captured signal-to-noise ratio (SNR) samples and got statistical results of packet loss at each communication cycle.
Statistical multiplexing and packet-based transport make CPRI over Ethernet (CoE) [77] efficient and cost effective.
Then, with the derived statistical descriptions, the average packet delays are investigated over the i.ni.d Nakgami-m fading channels.
In this paper we propose a more cost-efficient alternative to current transport network technologies (SONET/SDH) based on the high-bandwidth transport and deterministic performance of the optical circuit technologies (i.e., WSON) along with the efficient aggregation and statistical multiplexing of a packet transport technology (i.e., MPLS-TP) to support IP and Ethernet services.
Both the average sequence number gap between the successive packets and the average statistical value of the de-authentication packets received by an access point are used to detect the de-authentication DoS attack.
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