DocumentCode
732361
Title
Measurement system of shipboard indoor signal propagation characteristics based on three way signature sequence packet mode
Author
Jeong-Ho Kim ; Ji-Hyun Moon ; Na-Hyung Kim
Author_Institution
Dept..of Electron. Eng., Ewha Womans Univ., Seoul, South Korea
fYear
2015
fDate
7-10 July 2015
Firstpage
382
Lastpage
385
Abstract
Recently, the new issues for the safety and the information delivery system in the ship are raised. The deployment and the efficient algorithms of deploying the wireless sensor networks instead of using the built-in wired networks or the setup of the new wired networks is more desirable than the deployment o f the wired networks i n a s hip after its final production since it can reduce the cost and the time of the brand new wired networks by reshaping some of the internal structure of the ship. In this paper, the shipboard signal propagation measurement system based on the signature sequence-three way slave mode are designed and its measured data are analyzed after measuring the signal propagation characteristics. Consequently, it is expected that the reliable and cost-effective signal measurement system with the three way algorithm for the deployment of the shipboard wireless networks can be achieved.
Keywords
signal processing; wireless sensor networks; built-in wired networks; cost-effective signal measurement system; information delivery system; internal structure; measurement system; shipboard indoor signal propagation characteristics; shipboard signal propagation measurement system; shipboard wireless networks; three way signature sequence packet mode; wireless sensor networks; Buildings; Frequency measurement; Marine vehicles; Power measurement; Time measurement; Wireless communication; Wireless sensor networks; Signal progagation; shipboard indoor propagation; signal propagation characteristics; signature sequence;
fLanguage
English
Publisher
ieee
Conference_Titel
Ubiquitous and Future Networks (ICUFN), 2015 Seventh International Conference on
Conference_Location
Sapporo
ISSN
2288-0712
Type
conf
DOI
10.1109/ICUFN.2015.7182570
Filename
7182570
Link To Document