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Design and Implementation of a State-Driven Operating System for Highly Reconfigurable Sensor Networksopen access

Authors
Kim, Tae-Hyung
Issue Date
Aug-2013
Publisher
Taylor and Francis
Keywords
ARCHITECTURE; MACHINE
Citation
International Journal of Distributed Sensor Networks, v.9, pp 1 - 7
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Distributed Sensor Networks
Volume
9
Start Page
1
End Page
7
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/30921
DOI
10.1155/2013/659518
ISSN
1550-1329
1550-1477
Abstract
Due to the low-cost and low-power requirement in an individual sensor node, the available computing resources turn out to be very limited like small memory footprint and irreplaceable battery power. Sensed data fusion might be needed before being transmitted as a tradeoff between procession and transmission in consideration of saving power consumption. Even worse, the application program needs to be complicated enough to be self-organizing and dynamically reconfigurable because changes in an operating environment continue even after deployment. State-driven operating system platform offers numerous benefits in this challenging situation. It provides a powerful way to accommodate complex reactive systems like diverse wireless sensor network applications. The memory usage can be bounded within a state transition table. The complicated issues like concurrency control and asynchronous event handling capabilities can be easily achieved in a well-defined behavior of state transition diagram. In this paper, we present an efficient and effective design of the state-driven operating system for wireless sensor nodes. We describe that the new platform can operate in an extremely resource constrained situation while providing the desired concurrency, reactivity, and reconfigurability. We also compare the executing results after comparing some benchmark test results with those on TinyOS.
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COLLEGE OF COMPUTING > ERICA 컴퓨터학부 > 1. Journal Articles

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