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Titlebook: Ad-hoc, Mobile, and Wireless Networks; 12th International C Jacek Cichoń,Maciej Gȩbala,Marek Klonowski Conference proceedings 2013 Springer

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https://doi.org/10.1007/978-981-97-7695-5al routing mechanisms are no longer suitable. New approaches use social relations between mobile users as a criterion for the routing process. We argue that in such an approach, nodes with high social popularity may become congested. We show that social-based routing algorithms such as Bubble Rap ar
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Andreas Vesalius and his Fabrica, 1537-1564perations is executed, in sensor networks with mobile nodes. For this problem, we present two localized algorithms (nodes use only 2-hop information), namely LPrim and LMCP, which are based on trees with minimum highest cost edges and shortest paths trees, respectively. The algorithms were evaluated
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https://doi.org/10.1007/978-3-031-69565-0ility requirements. Works on the real-time capability of WSNs have been proposed [1]. In this paper we propose to study the achievable reliability of WSNs, tacking into account the probabilistic nature of the radio link. We define the reliability of a WSN to be the probability that an end-to-end com
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Anforderungsmanagement in sieben Tagenrestore some quality of service. We formulate the task as a multi-objective problem over two graphs. The solution specifies additional nodes to reconnect a connectivity graph subject to network path-length constraints, and a path through a mobility graph to visit those locations. The objectives are
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Tag 1: Anforderungsmanagement starten, It is based on an optimization performed locally on the data gathering spanning tree. WSTDO algorithm is compared to two centralized spanning tree optimization algorithms MITT and MLTTA. The performance of WSTDO achieves between one half and one third of the MITT performance and proves to be better
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https://doi.org/10.1007/978-3-031-60401-0 time and any rate, and no stable periods can be assumed. In these harsh environments, we strive to preserve some properties such as cycle-freeness or existence of a unique root in each fragment regardless of the events, so as to keep these fragments functioning uninterruptedly to a possible extent.
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