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Titlebook: Ad-hoc, Mobile, and Wireless Networks; 11th International C Xiang-Yang Li,Symeon Papavassiliou,Stefan Ruehrup Conference proceedings 2012 S

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Chirurgia Plastica et Reconstructivaatible with the leading UHF RFID standard EPCGlobal Generation 2 Class 1. The design allows the addition of external analog and digital sensors and in that way the tag acts as a semi-passive wireless sensor node. A standard UHF RFID reader can acquire sensor data. The tag is designed as an open plat
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https://doi.org/10.1007/978-3-642-75192-9g patterns from real herds are fed into statistical models to give rise to network simulation that is based on accurate herd behavior. The simulation results are used in evaluation of novel protocol ideas customized to the needs of farm monitoring.
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Conference proceedings 2012over a wide spectrum of traditional networking topics ranging from routing to the application layer, to localization in various networking environments such as wireless sensor and ad-hoc networks, and give insights in a variety of application areas.
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Chirurgia Plastica et Reconstructivaform so that the firmware in the tag can be easily modified. Test results of our open platform semi-passive UHF RFID tag demonstrated that it can achieve a read rate above 50% when an open platform semi-passive UHF RFID tag is placed four meters from the reader antenna and the reader output power is set to 21 dBm.
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0302-9743 from routing to the application layer, to localization in various networking environments such as wireless sensor and ad-hoc networks, and give insights in a variety of application areas.978-3-642-31637-1978-3-642-31638-8Series ISSN 0302-9743 Series E-ISSN 1611-3349
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https://doi.org/10.1007/978-3-662-00168-4that the geometric approach provides reliable estimates for the distance between any two adjacent nodes in a network. Experiments reveal that the estimation has less relative percentage error compared to a hop based algorithm in networks with different node distributions.
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https://doi.org/10.1007/978-3-662-00168-4r cases with heterogeneous and correlated mobility. We demonstrate that our approach, which is based on characterising mobility through a colouring process, achieves a very good fit to simulated results also for such complex mobility patterns.
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