@inproceedings{338925a063ef4dd39fb672f109a92c0d,
title = "Buffer overflow duration in a model of WSN node with power saving mechanism based on SV policy",
abstract = "A model of a wireless sensor network node with power saving mechanism based on single vacation policy is investigated. The input/output traffic is supposed to be described by an MX/G/1/N-type queueing system with finite buffer capacity and batch packets{\textquoteright} arrivals. In the case the queue of packets directed to the node becomes empty the radio transmitter/receiver is switched off for a random and generally distributed period of time (single vacation). During the vacation the transmission of packets via the node is suspended. Using analytical approach, based on the total probability formula, integral equations and linear algebra, the closed-form representation for the cumulative distribution function of the first buffer overflow duration is found. Hence, the corresponding results for next such periods are obtained. Finally, probability distributions of the number of losses in successive buffer overflow periods are derived.",
keywords = "Buffer overflow, Packet loss, Power saving, Single vacation policy, Wireless sensor network",
author = "Kempa, \{Wojciech M.\}",
note = "Publisher Copyright: {\textcopyright} Springer International Publishing AG 2017.; 23rd International Conference on Information and Software Technologies, ICIST 2017 ; Conference date: 12-10-2017 Through 14-10-2017",
year = "2017",
doi = "10.1007/978-3-319-67642-5\_32",
language = "English",
isbn = "9783319676418",
series = "Communications in Computer and Information Science",
publisher = "Springer Verlag",
pages = "385--394",
editor = "Robertas Damasevieius and Vilma Mikasyte",
booktitle = "Information and Software Technologies - 23rd International Conference, ICIST 2017, Proceedings",
address = "Germany",
}