DocumentCode :
179165
Title :
Design and Algorithm Study of Propagation Model in Fire Network
Author :
Fan Yu-Feng ; Sui Hu-Lin ; Ma Qing-Bo
Author_Institution :
Shenyang Fire Res. Inst.-MPS, Shenyang, China
fYear :
2014
fDate :
15-16 June 2014
Firstpage :
321
Lastpage :
325
Abstract :
In order to solve the fire command network communication problems not be guaranteed when fire forces implement fire rescue in a building, fire command network radio propagation model is designed and algorithm is investigated. First, the research is conducted from the fire fighting and rescue emergency communication security status and characteristics of building fire, introduced the ITU-R indoor propagation model and Keenan-motley indoor propagation model. Then, using different frequencies experimental statistics of radio waves, we got the attenuation model results of interior building penetration. Finally, we established the attenuation model for the building penetration and wave field strength and level calculation. Several experimental results show that for the same building, using the frequency of 2.4GHz, 17dBm transmit power of the base station, we deploy single point and multi-point base stations to achieve signal coverage inside building, the measurement results which is obtained from spectrum analyzer shows that reception field strength of the signal can be achieved 97% ~ 99% at several predetermined monitoring. It can satisfy the communication support requirements of fire forces rescue.
Keywords :
emergency management; fires; indoor radio; radiowave propagation; telecommunication security; I-TUR indoor propagation model; Keenan-motley indoor propagation model; attenuation model; fire command network communication problems; fire command network radio propagation model; fire forces; fire network; fire rescue; frequency 2.4 GHz; interior building penetration; multi-point base stations; propagation model; radio waves; rescue emergency communication security status; spectrum analyzer; wave field strength; Attenuation; Base stations; Fires; Floors; Loss measurement; Propagation losses; communication security; fire and rescue; radio wave; transmission model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Systems Design and Engineering Applications (ISDEA), 2014 Fifth International Conference on
Conference_Location :
Hunan
Print_ISBN :
978-1-4799-4262-6
Type :
conf
DOI :
10.1109/ISDEA.2014.79
Filename :
6977607
Link To Document :
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