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Facing the qiblah is mandatory requirement that some worship in religion of islam, so the direction of qibla must be accurate and the intended direction is the position of the Kaaba at the Grand Mosque. The development of positioning technology can help to determine the direction of Qibla accuratel...

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Main Author: FIRMANSYAH ISKANDAR (NIM : 15110087), MUHAMAD
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/20304
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:20304
spelling id-itb.:203042017-10-09T10:51:12Z#TITLE_ALTERNATIVE# FIRMANSYAH ISKANDAR (NIM : 15110087), MUHAMAD Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/20304 Facing the qiblah is mandatory requirement that some worship in religion of islam, so the direction of qibla must be accurate and the intended direction is the position of the Kaaba at the Grand Mosque. The development of positioning technology can help to determine the direction of Qibla accurately. In the science of geodesy, direction as knows as azimut, with the use of methods RTPPP-RTX and Total Station determination and Qibla azimut measurement can be done accurately because the method has sufficient accuracy level. RTPPP-RTX method can determine the position of a point to reach 10-20 cm level accuracy within 10-45 minutes after passing the convergence time. The position of the point gained from this method is processed using Method Using Vincenty to get Qibla azimut of the observation point. Qibla azimut calculation results were compared with Qibla azimut at an observation point at the moment. Azimut Qiblah presently obtainable from the process of measuring the angle between GNSS points and Syaf Mosque using Total Station instrument and is calculated by the angle calculation Through these processes will get the value of the difference between the measurement results of Qibla and Qibla from the mosque at the moment, the difference obtained is analyzed to understand why its happening a change of the direction of Qibla. With the use of methods RTPPP-RTX and Total Station determination and measurement of Qibla can provide convenience in the aspect of cost, time and human resources for its quick stages in the process. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Facing the qiblah is mandatory requirement that some worship in religion of islam, so the direction of qibla must be accurate and the intended direction is the position of the Kaaba at the Grand Mosque. The development of positioning technology can help to determine the direction of Qibla accurately. In the science of geodesy, direction as knows as azimut, with the use of methods RTPPP-RTX and Total Station determination and Qibla azimut measurement can be done accurately because the method has sufficient accuracy level. RTPPP-RTX method can determine the position of a point to reach 10-20 cm level accuracy within 10-45 minutes after passing the convergence time. The position of the point gained from this method is processed using Method Using Vincenty to get Qibla azimut of the observation point. Qibla azimut calculation results were compared with Qibla azimut at an observation point at the moment. Azimut Qiblah presently obtainable from the process of measuring the angle between GNSS points and Syaf Mosque using Total Station instrument and is calculated by the angle calculation Through these processes will get the value of the difference between the measurement results of Qibla and Qibla from the mosque at the moment, the difference obtained is analyzed to understand why its happening a change of the direction of Qibla. With the use of methods RTPPP-RTX and Total Station determination and measurement of Qibla can provide convenience in the aspect of cost, time and human resources for its quick stages in the process.
format Final Project
author FIRMANSYAH ISKANDAR (NIM : 15110087), MUHAMAD
spellingShingle FIRMANSYAH ISKANDAR (NIM : 15110087), MUHAMAD
#TITLE_ALTERNATIVE#
author_facet FIRMANSYAH ISKANDAR (NIM : 15110087), MUHAMAD
author_sort FIRMANSYAH ISKANDAR (NIM : 15110087), MUHAMAD
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
title_sort #title_alternative#
url https://digilib.itb.ac.id/gdl/view/20304
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