A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory
碩士 === 國立交通大學 === 土木工程系 === 91 === In GPS satellite receivers position accuracy examination, the zero baseline test is a very important step. Also, zero baseline test is one of the main method of receiving the internal noise in instruments. This test is to receive the satellite signal fro...
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ndltd-TW-091NCTU00150352016-06-22T04:14:05Z http://ndltd.ncl.edu.tw/handle/03987380270454442993 A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory 應用零基線原理檢驗接收儀內部雜訊之研究 Mei-Li Liu 劉美利 碩士 國立交通大學 土木工程系 91 In GPS satellite receivers position accuracy examination, the zero baseline test is a very important step. Also, zero baseline test is one of the main method of receiving the internal noise in instruments. This test is to receive the satellite signal from the same environmental conditions. For this purpose, many different trademarks' receivers are connected with a GPS antenna splitter, therefore, all the satellite signal is received from the same antenna. However, the baseline length is not zero because each receive’s parameters in instrument are different, Such as channel time delays or receives the instrument age…Etc. Therefore, it is usually to test standard accuracy of the instrument with this principle. In this research, the results’ quality is checked with TEQC. The suggestion test time is more than 4 houses, and the sampling time interval is 5 second. The test precision of a baseline is within 1mm using Bernese 4.2 version software to calculate. Comparison with GPSurvey 2.35 version software, Bernese 4.2 version is more stable and more accurate. In general, 30 minutes are the enough time to receive data using GPSurvey 2.35 version software to execute the data processing. Chun-Sung Chen 陳春盛 2003 學位論文 ; thesis 74 zh-TW |
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碩士 === 國立交通大學 === 土木工程系 === 91 === In GPS satellite receivers position accuracy examination, the zero baseline test is a very important step. Also, zero baseline test is one of the main method of receiving the internal noise in instruments. This test is to receive the satellite signal from the same environmental conditions. For this purpose, many different trademarks' receivers are connected with a GPS antenna splitter, therefore, all the satellite signal is received from the same antenna. However, the baseline length is not zero because each receive’s parameters in instrument are different, Such as channel time delays or receives the instrument age…Etc. Therefore, it is usually to test standard accuracy of the instrument with this principle.
In this research, the results’ quality is checked with TEQC. The suggestion test time is more than 4 houses, and the sampling time interval is 5 second. The test precision of a baseline is within 1mm using Bernese 4.2 version software to calculate. Comparison with GPSurvey 2.35 version software, Bernese 4.2 version is more stable and more accurate. In general, 30 minutes are the enough time to receive data using GPSurvey 2.35 version software to execute the data processing.
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author2 |
Chun-Sung Chen |
author_facet |
Chun-Sung Chen Mei-Li Liu 劉美利 |
author |
Mei-Li Liu 劉美利 |
spellingShingle |
Mei-Li Liu 劉美利 A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory |
author_sort |
Mei-Li Liu |
title |
A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory |
title_short |
A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory |
title_full |
A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory |
title_fullStr |
A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory |
title_full_unstemmed |
A study on the inspect the inner noise of the GPS receiver by using Zero Baseline theory |
title_sort |
study on the inspect the inner noise of the gps receiver by using zero baseline theory |
publishDate |
2003 |
url |
http://ndltd.ncl.edu.tw/handle/03987380270454442993 |
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