Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz
Wireless internet service in educational buildings plays a crucial role in telecommunications for the knowledge sharing process. Therefore, various factors that may limit internet services coverage in the building should be eliminated or reduced. One such factor is path losses. Path losses are cause...
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Politeknik Ganesha Medan
2021-04-01
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doaj-7b76eeac528b4f4fbf9733f3d97bf08d2021-04-12T03:53:20ZengPoliteknik Ganesha MedanSinkron2541-044X2541-20192021-04-015223925010.33395/sinkron.v5i2.108711135Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHzPanangian Mahadi Sihombing0Maksum Pinem1Sri Indah Rezkika2Universitas Al - AzharUniversitas Sumatera UtaraUniversitas Al - AzharWireless internet service in educational buildings plays a crucial role in telecommunications for the knowledge sharing process. Therefore, various factors that may limit internet services coverage in the building should be eliminated or reduced. One such factor is path losses. Path losses are caused by multiple obstacles between the transmitting and receiving antennas. The problem of path losses in the education building can be solved by providing signal booster devices or Wireless Fidelity (Wi-Fi). But not all college buildings have such tools. Besides, WiFi devices also have limitations on bandwidth and the number of users. Thus, mobile communication devices or smartphones located inside the education buildings still need internet service coverage from the transmitter antenna outside the building. An accurate propagation model is required so that the transmitter antenna outside the building can provide internet service coverage to the inside of the building. This paper had been analyzed the selection of propagation models using three validation formulas, namely Mean Error (ME), Root Mean Square Error (RMSE), and Standard Deviation Error (SDE). This paper used several propagation models, namely the 3GPP Model, Winner+ Model, and COST231 Model. Based on the analysis of calculation and measurement data, it is known that the COST231 model is the most accurate because it has the lowest ME, RMSE, and SDE values.https://jurnal.polgan.ac.id/index.php/sinkron/article/view/10871path losses; propagation model; propagation from outside into the building; 3gpp model; winner model; cost231 model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Panangian Mahadi Sihombing Maksum Pinem Sri Indah Rezkika |
spellingShingle |
Panangian Mahadi Sihombing Maksum Pinem Sri Indah Rezkika Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz Sinkron path losses; propagation model; propagation from outside into the building; 3gpp model; winner model; cost231 model |
author_facet |
Panangian Mahadi Sihombing Maksum Pinem Sri Indah Rezkika |
author_sort |
Panangian Mahadi Sihombing |
title |
Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz |
title_short |
Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz |
title_full |
Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz |
title_fullStr |
Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz |
title_full_unstemmed |
Analysis of the selection of propagation models from outside into the building at 1800 MHz and 2100 MHz |
title_sort |
analysis of the selection of propagation models from outside into the building at 1800 mhz and 2100 mhz |
publisher |
Politeknik Ganesha Medan |
series |
Sinkron |
issn |
2541-044X 2541-2019 |
publishDate |
2021-04-01 |
description |
Wireless internet service in educational buildings plays a crucial role in telecommunications for the knowledge sharing process. Therefore, various factors that may limit internet services coverage in the building should be eliminated or reduced. One such factor is path losses. Path losses are caused by multiple obstacles between the transmitting and receiving antennas. The problem of path losses in the education building can be solved by providing signal booster devices or Wireless Fidelity (Wi-Fi). But not all college buildings have such tools. Besides, WiFi devices also have limitations on bandwidth and the number of users. Thus, mobile communication devices or smartphones located inside the education buildings still need internet service coverage from the transmitter antenna outside the building. An accurate propagation model is required so that the transmitter antenna outside the building can provide internet service coverage to the inside of the building. This paper had been analyzed the selection of propagation models using three validation formulas, namely Mean Error (ME), Root Mean Square Error (RMSE), and Standard Deviation Error (SDE). This paper used several propagation models, namely the 3GPP Model, Winner+ Model, and COST231 Model. Based on the analysis of calculation and measurement data, it is known that the COST231 model is the most accurate because it has the lowest ME, RMSE, and SDE values. |
topic |
path losses; propagation model; propagation from outside into the building; 3gpp model; winner model; cost231 model |
url |
https://jurnal.polgan.ac.id/index.php/sinkron/article/view/10871 |
work_keys_str_mv |
AT panangianmahadisihombing analysisoftheselectionofpropagationmodelsfromoutsideintothebuildingat1800mhzand2100mhz AT maksumpinem analysisoftheselectionofpropagationmodelsfromoutsideintothebuildingat1800mhzand2100mhz AT sriindahrezkika analysisoftheselectionofpropagationmodelsfromoutsideintothebuildingat1800mhzand2100mhz |
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