• Title/Summary/Keyword: GIPSY

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GIPSY 5.0을 이용한 국내 GPS 상시관측소 정밀 좌표 및 속도 산출

  • Ha, Ji-Hyeon;Won, Ji-Hye;Park, Gwan-Dong;Heo, Mun-Beom;Nam, Gi-Uk
    • Bulletin of the Korean Space Science Society
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    • 2010.04a
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    • pp.35.5-36
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    • 2010
  • 현재 국내에는 90여개소 이상의 GPS 상시관측소가 운영되고 있으며, 측지, 측량, 항법, 군사, 과학 연구 등 다양한 분야에 활용되고 있다. 상시관측소의 정확한 위치 정보를 결정하고 사용자에게 제공하는 것은 매우 중요한 일이다. GIPSY-OASIS II(GPS Inferred Positioning System-Orbit Analysis and Simulation Software II, 이하 GIPSY라 칭함)는 고정밀 GPS 데이터 처리 프로그램으로 2008년 6월을 기해 GIPSY 5.0버전으로 업데이트 되었다. 이에 따라 안테나 위상중심변동량(phase center variation) 절대보정(absolute calibration) 모델, GMF(global mapping function) 등 최신 오차 모델 적용이 가능해 졌다. 이 논문에서는 GIPSY 5.0을 이용하여 국내 GPS 상시관측소의 정밀 좌표와 속도를 산출하고, 기존 공시좌표와 비교하였다. 그 결과 수평, 수직방향으로 최대 1~2cm의 좌표 변화가 나타났다.

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Development of Internet Based GPS Data Processing Service

  • Kim, Sang-Ho;Park, Kwan-Dong;Kim, Hye-In
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • v.2
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    • pp.291-295
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    • 2006
  • As GPS equipments improve, one can acquire GPS data easily in the field. However, to obtain precise and accurate coordinates, post processing is additionally required and the processing needs high degree of skills. Besides, it is very common that we can't operate processing software in the field because required system environment is usually not prepared. The aim of this study is the development of internet-based GPS data processing service. For post processing, we use GIPSY developed by JPL. It has many advantages such as precise point positioning, which enables a rapid determination of receiver positions. The developed service in this study proceeds as following orders by interlocking GIPSY and internet service on a Linux platform: Users upload raw data files on the internet, then GIPSY runs automatically and then the user get the result in the field. We use an Apache Web Server as a hosting program and PHP is used in coding web pages.

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Development of an Internet Based GPS Data Processing Service (인터넷 기반 GPS 데이터 처리 서비스에 관한 연구)

  • Kim, Sang-Ho;Park, Kwan-Dong
    • Journal of the Korean Association of Geographic Information Studies
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    • v.10 no.1
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    • pp.84-91
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    • 2007
  • As GPS equipments improve, one can acquire GPS data easily in the field. To obtain precise and accurate coordinates, however, post processing is additionally required and the processing needs high degree of skills. Besides, it is very common that we cannot operate processing softwares in the field because the required system environment is usually not prepared. The aim of this study is the development of an internet-based GPS data processing service. For post processing, we used GIPSY developed by JPL. It has many advantages such as obtaining coordinates quickly by using precise or predicted ephemeris. This service proceeds as following orders by interlocking GIPSY software and internet service which is operated on a Linux platform: Users upload the raw data file on the internet, then GIPSY runs automatically and then the user gets the result in the field. We use an Apache web server as the hosting program and PHP scripts are used in coding web pages. The total processing time including data-uploading was around 30 seconds for a 24-hour data with a 30-second sampling rate.

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Development of LX GNSS On-line Data Processing System Based on the GIPSY-OASIS (GIPSY-OASIS 기반 LX GNSS 온라인 자료처리 시스템 개발)

  • Kim, Hyun-Ho;Ha, Ji-Hyun;Tcha, Dek-Kie
    • Journal of Advanced Navigation Technology
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    • v.18 no.6
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    • pp.555-561
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    • 2014
  • Data processing service via internet help user to get the GNSS data processing result more precise and easily. Thus, online data process system is operated and developed by various research groups and national. But this service is difficult to use in domestic cadastral survey. In this study, we developed the online data processing system for a domestic cadastral survey. This is calculated coordinate using NGII CORS(SUWN) fiducially. And use PPP technique by GIPSY-OASIS. If user choose the observation data which want to calculate the coordinate, then is uploaded to GIPSY-OASIS server through FTP. After upload is complete, server automatically calculate coordinate, and send the report about result using e-mail. And it takes 2 minutes runtime on the basis of the 3 sessions. To verify the result, we used the data on SOUL, JUNJ as compared with notified-coordinate from NGII. As a result, got the difference for east-west 1.4 cm, north-south -1.0 cm, vertical 0.5 cm.

Precise Orbit Estimation of GPS using GIPSY-OASIS (GIPSY-OASIS기반 GPS 정밀 궤도 추정)

  • Ha, Jihyun;Chun, Sebum;Park, Kwan-Dong
    • Journal of Advanced Navigation Technology
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    • v.23 no.6
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    • pp.535-541
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    • 2019
  • In this paper, scripts for estimating the reference orbits of navigation satellites were developed and their performance was analyzed as a preliminary study for the development of the Korean GPS precise orbit determination technology. The JPL Flinn AC's data processing strategy was applied and Linux-based scripts were developed using GIPSY-OASIS. For the analysis of the accuracy of the estimated reference orbit, the precise orbit provided by the international GNSS data center was used as the truth. As a result, estimated satellite coordinates showed almost exactly same patterns and trends with the reference precise orbits, and their differences are in the range of ±2 cm. The average error between the two orbits was less than 1 cm in the 3D direction, while the standard deviation was also at 1 cm. From these, we found that the developed scripts have excellent performance in precise orbit determination.

Rapid and Accurate GPS Data Processing with Ultra-rapid Orbits (초신속궤도력을 이용한 신속한 고정밀 GPS 데이터 처리)

  • 박관동;조정호;하지현;임형철
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.21 no.4
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    • pp.309-316
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    • 2003
  • Rapid and accurate data processing is required in many GPS(Global Positioning System) applications including surveying. While one can use four different kinds of GPS satellite orbits, we evaluated the accuracy and precision of each kind of orbits to find the best candidate for rapid and accurate data processing. The four different kinds of orbits we: broadcast orbits from GPS satellites; and ultra-rapid orbits, rapid orbits, and precise orbits provided by international GPS data analysis centers such as IGS. With GIPSY and ultra-rapid orbits, we could get the positioning accuracy of 1.5cm from seven days of GPS data. From this study, we conclude that rapid and accurate data processing is achieved with GIPSY and ultra-rapid orbits.

Determination of Absolute Coordinates of Cadastral Satellite Station using Gipsy-Oasis II (Gipsy-Oasis II를 이용한 지적위성기준점의 절대 좌표 결정)

  • Song, Dong Seob;Yun, Hong Sic
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.2D
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    • pp.317-324
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    • 2006
  • This study deals with the precise GPS data processing refer to ITRF2000 through the calculation of absolute coordinates of cadastral satellite station which were established by purpose of cadastral surveying. We used the Gipsy-Oasis II software developed Jet Propulsion Laboratory to estimate daily position of GPS stations with orbital and atmospheric parameters. Especially, we carried out ionospheric delay, tropospheric delay, data existence whether or not and quality control check of observation data during pre-processing. The standard deviation of absolute coordinates was determined better than ${\pm}4mm$ from GPS precise analysis. The RMSE of difference between the result of this study and existing result by using Bernese s/w shows ${\Delta}X={\pm}0.079m$, ${\Delta}Y={\pm}0.019m$ and ${\Delta}Z={\pm}0.031m$.

Near-Real-Time Ship Tracking using GPS Precise Point Positioning (GPS 정밀단독측위 기법을 이용한 준실시간 선박 위치추적)

  • Ha, Ji-Hyun;Heo, Moon-Beom;Nam, Gi-Wook
    • Journal of Advanced Navigation Technology
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    • v.14 no.6
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    • pp.783-790
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    • 2010
  • For safety navigation of ships at sea, ships monitor their location obtained from Global Positioning Satellite System (GNSS). In this study, we computed near-real-time positions of a ship at sea using GPS Precise Point Positioning (PPP) technique and analyzed precision of the near-real-time positions. We conducted ship borne GPS observations in the south sea of Korea. To process the GPS data using PPP technique, GIPSY-OASIS (GPS Inferred Positioning System-Orbit Analysis and Simulation Software) developed by the Jet Propulsion Laboratory was used. Antenna phase center variations, ocean tidal loading displacements, and azimuthal gradients of the atmosphere were corrected or estimated as standard procedures of high-precision GIPSY-OASIS data processing. As a result, the precisions of near-real-time positions was ~1cm.

A Study on Ballet Costume II -Focusing on Romantic Ballet- (발레의상에 대한 연구 II -로맨틱발레를 중심으로-)

  • 이영숙
    • The Research Journal of the Costume Culture
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    • v.4 no.3
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    • pp.447-464
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    • 1996
  • In this study, observations were made on costumes of romantic ballet. Twelve ballets of romantic period were selected for this study; La Sylphide(1832), La Filledu Danube (1836), Le Diable Boiteux(1836), La Gitana(1838), La Gipsy(1839), La Tarentule(1839), L'Ombre(1839), Giselle(1841), La Peri(1843), La Esmeralda(1844), Pas de Quatre(1845), la Fille de Marbe(1847). Romantic age was acceptance of the ballerinas as the central figure on the stage. Famous ballerinas in romantic age were Marie Taglioni, Fanny Elβler, Carlota Grisi, Fanny Cerrito, Lucile Grahn. Romantic style of dancing sprung onto the stage of the Paris Oepra with M. Taglione's first performance of La Sylphide in 1832. Ballet costumes n romantic period except La Gipsy were with low decolletage, very short transparent sleeves that decorated with shining band or small cuffs, and the waist of the fitted bodice dipped to point in front decorated with sash or jewel. The form of skirts was bell-shaped and reached middle calf. That style became stereotype for ballet costume and called ballet blanc.

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High Precision GPS Positioning Referred to ITRF (ITRF에 준거한 정밀 GPS 측위에 관한 연구)

  • 윤홍식;황진상;최윤수
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.18 no.3
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    • pp.251-261
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    • 2000
  • This paper deals with the precision analysis of GPS measurement referred to ITRF96 which is the new reference frame announced in 1996, and show the data processing results of short and long baselines with different methods. In this paper, we minimized the observation error of GPS using precise ephemerides which has provided by Jet Propulsion Laboratory and represents the comparative analysis results of baseline measurements using GIPSY-OASIS II software. Here, we also discussed the accuracy of data processing methods.

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