Title :
Design and Analysis of Delay-Tolerant Sensor Networks for Monitoring and Tracking Free-Roaming Animals
Author :
Ehsan, Samina ; Bradford, Kyle ; Brugger, Max ; Hamdaoui, Bechir ; Kovchegov, Yevgeniy ; Johnson, Douglas ; Louhaichi, Mounir
fDate :
3/1/2012 12:00:00 AM
Abstract :
This paper is concerned with the design and analysis of delay-tolerant networks (DTNs) deployed for free-roaming animal monitoring, wherein information is either transmitted or carried to static access-points by the animals whose movement is assumed to be random. Specifically, in such mobility-aided applications where routing is performed in a store-carry-and-drop manner, limited buffer capacity of a carrier node plays a critical role, and data loss due to buffer overflow heavily depends on access-point density. Driven by this fact, our focus in this paper is on providing sufficient conditions on access-point density that limit the likelihood of buffer overflow. We first derive sufficient access-point density conditions that ensure that the data loss rates are statistically guaranteed to be below a given threshold. Then, we evaluate and validate the derived theoretical results through comparison with both synthetic and real-world data.
Keywords :
data communication; delay tolerant networks; mobile radio; object tracking; telecommunication network routing; wireless sensor networks; zoology; DTN; buffer overflow; data loss analysis; delay tolerant sensor networks; free-roaming animal monitoring; free-roaming animal tracking; information transmission; limited buffer capacity; mobility-aided applications; static access points; store-carry-and-drop routing; sufficient access point density conditions; Analytical models; Animals; Mathematical model; Mobile communication; Mobile computing; Monitoring; Motion segmentation; Performance modeling; data loss analysis; delay tolerant sensor networks; free-roaming animal monitoring system; sufficient node density;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.012412.111405