• 제목/요약/키워드: automatic telescope

검색결과 25건 처리시간 0.026초

Automation of Kyung Hee Astronomical Observatory 76 cm Telescope

  • Byeon, Seoyeon;Ji, Tae-Geun;Lee, Hye-In;Lee, Sunwoo;Pak, Soojong;Im, Myungshin
    • 천문학회보
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    • 제43권1호
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    • pp.67.3-68
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    • 2018
  • We plan to automatize the operation of Kyung Hee Astronomical Observatory (KHAO) 76 cm Telescope by adapting KAOS30 (KHU Automatic Observing Software for McDonald 30 inch Telescope). The software is developed to improve the efficiency of the observation system for monitoring transients and variable sources. It has installed and operated at McDonald 30 inch telescope since 2017 August. KAOS76 (KHU Automatic Observing Software for KHAO 76 cm Telescope) consists of four packages: Telescope Control Package (TCP), Data Acquisition Package (DAP), Auto Focus Package (AFP), and Script Mode Package (SMP). Most of the packages can be configured by minimized modifications of the codes because it includes common libraries for FLI instruments and also ASCOM standard. TCP, DAP, and AFP control astronomical devices. SMP supports automatic observing in a script mode. TCP of KAOS76 can communicate with the TCS via ASCOM. Also, KAOS76 has an extra function to compensate the misalignment of the polar axis. In this poster, we show the current status of the observing system with KAOS76.

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DESIGN CONCEPT FOR THE RETROFIT KAO 1M ROBOTIC TELESCOPE

  • Han, Won-Yong;Mack, Peter;Park, Jang-Hyun;Jin, Ho;Lee, Woo-Baik;Lee, Chung-Uk
    • Journal of Astronomy and Space Sciences
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    • 제17권2호
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    • pp.211-220
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    • 2000
  • Korea Astronomy Observatory(KAO) is working to retrofit its 1m robotic telescope in collaboration with a company (ACE, Astronomical Consultants & Equipment). The telescope system is being totally refurbished to make a fully automatic telescope which can operate in both interactive and fully autonomous robotic modes. Progress has been made in design and manufacturing of the telescope mount, mechanics, and optical performance system tests are being made for re-configured primary and secondary mirrors. The optical system is designed to collect 80% incident light within 0.5 arcsec with f/7.5 Ritchey-Chretien design. The telescope mount is an equatorial fork with a friction drive system. The design allows fully programmable tracking speeds with typical range of 15 arcsec/sec with accuracy of $\pm5$ arcsec/hour. The mount system has integral pointing model software to correct for refraction, and all mechanical errors and misalignments. The pointing model will permit positioning to better than 30 arcsec RMS within $75^{\circ}$ from zenith and 45 arcsec RMS elsewhere on the sky. The software is designed for interactive, remote and robotic modes of operation. In interactive and remote mode the user can manually enter coordinates or retrieve them from a computer file. In robotic mode the telescope controller downloads the coordinates in the order determined by the scheduler. The telescope will be equipped with a CCD camera and will be accessible via the internet.

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All-In-One Observing Software for Small Telescope

  • Han, Jimin;Pak, Soojong;Ji, Tae-Geun;Lee, Hye-In;Byeon, Seoyeon;Ahn, Hojae;Im, Myungshin
    • 천문학회보
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    • 제43권2호
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    • pp.57.2-57.2
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    • 2018
  • In astronomical observation, sequential device control and real-time data processing are important to maximize observing efficiency. We have developed series of automatic observing software (KAOS, KHU Automatic Observing Software), e.g. KAOS30 for the 30 inch telescope in the McDonald Observatory and KAOS76 for the 76 cm telescope in the KHAO. The series consist of four packages: the DAP (Data Acquisition Package) for CCD Camera control, the TCP (Telescope Control Package) for telescope control, the AFP (Auto Focus Package) for focusing, and the SMP (Script Mode Package) for automation of sequences. In this poster, we introduce KAOS10 which is being developed for controlling a small telescope such as aperture size of 10 cm. The hardware components are the QHY8pro CCD, the QHY5-II CMOS, the iOptron CEM 25 mount, and the Stellarvue SV102ED telescope. The devices are controlled on ASCOM Platform. In addition to the previous packages (DAP, SMP, TCP), KAOS10 has QLP (Quick Look Package) and astrometry function in the TCP. QHY8pro CCD has RGB Bayer matrix and the QLP transforms RGB images into BVR images in real-time. The TCP includes astrometry function which adjusts the telescope position by comparing the image with a star catalog. In the future, We expect KAOS10 be used on the research of transient objects such as a variable star.

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Kyung Hee University Automatic Observing Software for 10 cm Telescope (KAOS10)

  • Kim, Changgon;Han, Jimin;Ji, Tae-Geun;Lee, Hye-In;Pak, Soojong;Im, Myungshim
    • 천문학회보
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    • 제44권1호
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    • pp.72.3-72.3
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    • 2019
  • The observation of transient objects such as supernovae or variable stars requires a survey of the wide sky and quickly extracting the results. In accordance with this purpose, we have been developing an automatic observing software, KAOS (Kyung Hee University Automatic Observing Software) as a series. KAOS30 was the first series of KAOS and it was applied to the 30-inch platform at the McDonald Observatory in the United States of America. KAOS76 controls the 76-cm telescope at Kyung Hee Astronomical Observatory. In this poster, we introduce KAOS10 for controlling a portable telescope with a small aperture size attaching a guiding camera as QHY-5L II. Kyung Hee University auto-guiding package which includes the auto-guiding function for small aperture size telescope was also developed. Additionally, the Telescope Control Package(TCP) can communicate with the main server to do astrometry for pointing and identifying targets efficiently. KAOS10 has a universal interface that will be useful for the research of both amateurs and professionals.

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천체 망원경의 자동화: II. 망원경 원격 조종 기술, 장비 및 소프트웨어의 개발 (AUTOMATION OF ASTRONOMICAL TELESCOPE: II. DEVELOPMENT OF TECHNIQUES, EQUIPMENTS AND SOFTWARES FOR REMOTE CONTROL OF TELESCOPE)

  • 강용우;이형목
    • 천문학논총
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    • 제11권1호
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    • pp.57-73
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    • 1996
  • As a continuing effort to develop an automatic control system for small telescope, we developed the software for telescope control and CCD observations under DOS operating system. For accurate pointing of the telescope in short amount of time, we modelled the angular speed of the telescope by aquadratic function of time (constant acceleration) for the first 15 second and then linear function of time (zero acceleration) aftwewards. By changing the telescope speed from 'slew' to 'fine' before the telescope reaches the desired position, we could achieve the accuracy of a few arcsecond. The CCD control software was written for model CCD-10 of CCD Technology. This CCD can be used for guiding purposes. We also conducted the study for remote control of the telescope using telephone line. Although it cannot be used for real observations at the present form, we succeded in remotely pointing the telescope to desired direction. As faster communication technologies become widely available, simple observations can be made remotely in the near future. Finally we report some observational results made with the present control system.

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인터넷 활용 천체관측 교육을 위한 36 cm 망원경의 자동화 시스템 개발 (Development of an Automatic System of 36 cm Telescope for the Web-based Teaching in Astronomical Observation)

  • 김희수;양종우;김혁;한인우;강남화
    • 한국지구과학회지
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    • 제28권4호
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    • pp.431-444
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    • 2007
  • 인터넷상에서 관측할 수 있는 36 츠 자동화 망원경이 개발되었다. 이 시스템의 추적 오차는 약 1"/분이고, 지향 정밀도는 적경 방향에서 약 ${\pm}10"$, 적위 방향에서 약 ${\pm}20"$였다. 이것은 계속 개선되어나갈 것이다. 예비관측을 통해 얻은 영상자료를 IRAF를 통해 분석해본 결과 비교적 안정적인 결과를 보여주었다. 이러한 결과는 원격천체관측 교육에 활용할 수 있음을 의미한다.

밝은 장주기 변광성관측을 위한 자동관측시스템 구축 (A CONSTRUCTION OF AN AUTOMATIC OBSERVATION SYSTEM FOR BRIGHT AND LONG PERIOD VARIABLE STARS)

  • 윤요나;이충욱;차상목;김용기
    • Journal of Astronomy and Space Sciences
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    • 제23권2호
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    • pp.143-152
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    • 2006
  • 밝은 장주기 변광성들을 효율적으로 관측하기 위하여 충북대학교 교내에 자동관측시스템을 구축하였다. 이 시스템의 구성을 위하여 기존의 Meade사 LX200 40cm 망원경의 구동부를 개선하고, ObsTool II라는 관측프로그램에 의하여 망원경, CCD 카메라, 돔의 제어가 하나의 프로그램으로 가능하도록 구성하였다. ObsTool II는 COM(Common Object Module)을 이용하여 개발한 프로그램으로서 시스템을 구성하는 망원경이나 CCD 카메라의 기종이 바뀌어도 큰 수정 없이 시스템을 재구성할 수 있다. 또한, 이 시스템은 광전측광관측처럼 변광성, 비교성, 검토성 등을 오가는 기능을 가지고 있어 CCD의 시야에 적당한 비교성이 함께 들어오지 않더라도 관측이 가능하다. 이 논문에서 새롭게 구성한 자동관측시스템의 안정성을 검토하기 위하여 W UMa형 변광성 V523 Cas와 자기 격변변광성 TT Ari를 관측하여 그 결과를 제시하면서 본 논문에서 개발한 시스템들의 활용가능성을 토의하였다.

Performance evaluation of the 76 cm telescope at Kyung Hee Astronomical Observatory (KHAO)

  • Ji, Tae-Geun;Han, Jimin;Ahn, Hojae;Lee, Sumin;Kim, Dohoon;Kim, Kyung Tae;Im, Myungshin;Pak, Soojong
    • 천문학회보
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    • 제46권1호
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    • pp.49.3-49.3
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    • 2021
  • The 76 cm telescope in Kyung Hee Astronomical Observatory is participating in the small telescope network of the SomangNet project, which started in 2020. Since the installation of the telescope in 1992, the system configuration has been changed several times. The optical system of this telescope has a Ritchey-Chrétien configuration with 76 cm in diameter and the focal ratio is f/7. The mount is a single fork equatorial type and its control system is operated by TheSkyX software. We use a science camera with a 4k × 4k CCD and standard Johnson-Cousins UBVRI filters, which cover a field of view of 23.7 × 23.7 arcmin. We are also developing the Kyung Hee Automatic Observing Software for the 76 cm telescope (KAOS76) for efficient operations. In this work, we present the standard star calibration results, the current status of the system, and the expected science capabilities.

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Development of KHU Automatic Observing Software for McDonald 30inch telescope (KAOS30)

  • Ji, Tae-Geun;Byeon, Seoyeon;Lee, Hye-In;Jung, Hyunsoo;Lee, Sang-Yun;Hwang, Sungyong;Choi, Changsu;Gibson, Coyne A.;Kuehne, John;Marshall, Jennifer;Im, Myungshin;Pak, Soojong
    • 천문학회보
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    • 제42권2호
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    • pp.57.1-57.1
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    • 2017
  • Automatic observing is the most efficient system for sky surveys that image many targets over large areas of the sky. Such a system requires the integrating control software that systematically manages astronomical instruments that are not connected to each other. In February of 2017, we installed a wide-field 10 inch telescope for Supernovae survey on the McDonald 30 inch telescope as a piggyback system. However, during the observations, information such as target coordinates could not be exchanged with the telescope mount. The reason is the program that controls the telescope control system (TCS) and the program that controls the imager operate on independent PCs. KAOS30 is an integrated observing software developed to improve this environment. The software is composed of four packages that are the Telescope Control Package (TCP), the Data Acquisition Package (DAP), the Auto Focus Package (AFP), and the Script Mode Package (SMP). The TCP communicates to the TCS and also communicates weather information. SMP supports automatic observing in a script mode, which improves the efficiency of the survey. KAOS30 was developed based on Visual C ++ and runs on the Windows operating system. It also supports the ASCOM driver platform for various manufacturers. The instruments that support ASCOM can be installed without modification of the program code. KAOS30 can be applied as software for many different telescopes in future projects.

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식쌍성의 극심시각 관측을 위한 소형 반자동 망원경 관측시스템의 구성 (A CONSTRUCTION OF A SEMI-AUTOMATIC TELESCOPE FOR ECLIPSE TIMING OBSERVATIONS OF ECLIPSING BINARY STARS)

  • 이충욱;박성수;김천휘;변용익
    • Journal of Astronomy and Space Sciences
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    • 제20권2호
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    • pp.143-152
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    • 2003
  • 식쌍성 극심시각의 체계적인 측광관측을 위하여 충북대학교 교내에 소형 반자동 망원경 관측시스템을 구축하였다. 이 시스템은 Paramount GT-1100s 독일식 마운트와 Celestron 14 광학계, 그리고 SBIG ST-8 CCD 카메라로 구성되었다. 한편, 관측시스템의 제어는 OBSTOOL이라는 소프트웨어에 의하여 이루어지는데, 이는 상용소프트웨어인 The Sky와 MaximDL에서 지원하는 COM(Component Object Model)을 이용하여 망원경과 CCD 카메라를 제어하도록 개발하였다. 이 시스템은 광전관측방법과 유사하게 망원경을 변광성, 비교성, 검토성 등으로 이동시키며 관측을 수행한다. 또한, 효율적인 자료처리를 위하여 작성한 Perl 스크립트로 관측 자료를 날짜별, 관측시야별, 필터별로 분류하고, IRAF소프트웨어를 이용하여 관측 영상의 전처리작업 등을 수행하도록 하였다. 또한, 이 시스템으로 관측한 식쌍성들의 식부근 광도곡선을 제시한다.