Improved transmission path loss model of mine electromagnetic wave

In view of problems that basic path loss model based on received signal strength indicator (RSSI) is established on visual range between sending node and receiving node and it is not conformed to transmission characteristics of mine electromagnetic wave, the paper proposed an improved transmission p...

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Main Author: PENG Xia
Format: Article
Language:zho
Published: Editorial Department of Industry and Mine Automation 2013-06-01
Series:Gong-kuang zidonghua
Subjects:
Online Access:http://www.gkzdh.cn/article/id/9185
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author PENG Xia
author_facet PENG Xia
author_sort PENG Xia
collection DOAJ
description In view of problems that basic path loss model based on received signal strength indicator (RSSI) is established on visual range between sending node and receiving node and it is not conformed to transmission characteristics of mine electromagnetic wave, the paper proposed an improved transmission path loss model of mine electromagnetic wave. On basis of basic model only considers attenuation factor, the improved model adds coefficient of multipath parameter and employs the least square method to calculate the two parameters. The calculation and Matlab simulation results show that the value obtained by use of the improved model is closer to measured value and has less error, and received power and transmission attenuation decrease with increasing of node interval.
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spelling doaj.art-64353cc45a8942ada25331efd32c919a2023-03-17T01:53:37ZzhoEditorial Department of Industry and Mine AutomationGong-kuang zidonghua1671-251X2013-06-013963639Improved transmission path loss model of mine electromagnetic wavePENG XiaIn view of problems that basic path loss model based on received signal strength indicator (RSSI) is established on visual range between sending node and receiving node and it is not conformed to transmission characteristics of mine electromagnetic wave, the paper proposed an improved transmission path loss model of mine electromagnetic wave. On basis of basic model only considers attenuation factor, the improved model adds coefficient of multipath parameter and employs the least square method to calculate the two parameters. The calculation and Matlab simulation results show that the value obtained by use of the improved model is closer to measured value and has less error, and received power and transmission attenuation decrease with increasing of node interval.http://www.gkzdh.cn/article/id/9185mine mobile communicationelectromagnetic wavetransmission pathbasic path loss modelreceived signal strength indicatorattenuation factorcoefficient of multipath parameterthe least square
spellingShingle PENG Xia
Improved transmission path loss model of mine electromagnetic wave
Gong-kuang zidonghua
mine mobile communication
electromagnetic wave
transmission path
basic path loss model
received signal strength indicator
attenuation factor
coefficient of multipath parameter
the least square
title Improved transmission path loss model of mine electromagnetic wave
title_full Improved transmission path loss model of mine electromagnetic wave
title_fullStr Improved transmission path loss model of mine electromagnetic wave
title_full_unstemmed Improved transmission path loss model of mine electromagnetic wave
title_short Improved transmission path loss model of mine electromagnetic wave
title_sort improved transmission path loss model of mine electromagnetic wave
topic mine mobile communication
electromagnetic wave
transmission path
basic path loss model
received signal strength indicator
attenuation factor
coefficient of multipath parameter
the least square
url http://www.gkzdh.cn/article/id/9185
work_keys_str_mv AT pengxia improvedtransmissionpathlossmodelofmineelectromagneticwave