• 제목/요약/키워드: CCD control software

검색결과 39건 처리시간 0.024초

보현산천문대 CCD 카메라 제어 소프트웨어 알고리즘 (ON THE ALGORITHM FOR BOAO CCD CAMERA CONTROL SOFTWARE)

  • 육인수;박병곤
    • 천문학논총
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    • 제11권1호
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    • pp.147-161
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    • 1996
  • The development of universal CCD camera control software for all BOAO CCD camera systems is proposed. The new software, running under Sun SPARCstation and motif based X window system with SunOS 4.1.3 operating system, replaces existing control software based on NeXTstation color and NeXTstep 2.1 operating system which is no more produced now. Several new features of the new software is introduced, some of which are 1) the image contrast is enhanced by color manipulation and display, 2) image zooming and trimming, 3) any size of image can be displayed in the scrolled window, and 4) the offset between telescope pointing position and CCD center is easily calculated by alt-azi map. Along with the above new features, the new software has advantages including ease of maintenance and upgrading and elimination of risk caused by hardware damage. Since September 1, the software beta version is being used by observers and there is not seen severe problem regarding the software itself, but several requests to equip more features to the software will be mirrored to future release.

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열전냉각방식의 범용 CCD 카메라 시스템 개발 II. 소프트웨어 (A DESIGN AND DEVELOPMENT OF MULTI-PURPOSE CCD CAMERA SYSTEM WITH THERMOELECTRIC COOLING II. SOFTWARE)

  • 오세헌;강용우;변용익
    • Journal of Astronomy and Space Sciences
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    • 제24권4호
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    • pp.367-378
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    • 2007
  • 천체관측용 고효율 CCD 카메라 시스템과 제어소프트웨어의 독자 개발의 시도로, 우리는 범용 CCD 카메라 시스템을 제작하고, 이를 Linux 운영체제 기반의 PC에서 병렬포트를 이용하여 제어하는 소프트웨어를 개발 완료하였다. 이 소프트웨어는 우리가 개발한 카메라에 장착될 수 있는 KAF-0401E($768\;{\times}\;512$), KAF-1602E($1536\;{\times}\;1024$), KAF-3200E($2184\;{\times}\;1472$) 등 세 가지 모델의 CCD 칩에 대해 모두 사용될 수 있다. 제작된 CCD 카메라를 효율적으로 제어하기 위하여, 개발된 소프트웨어는 CCD를 제어하는 부분과 온도와 셔터를 제어하는 부분의 두가지 구성으로 되어 있다. 이 중, 온도와 셔터의 제어는 CCD 동작과 무관하게 작동될 수 있도록 독립적인 프로세스로 작동되며, 관측 시에는 Linux의 다중 프로세스를 제어하는 소프트웨어를 통하여 통합 제어된다. 개발된 소프트웨어는 CCD 카메라를 수동 혹은 자동으로 구동할 수 있으며, 전천을 탐사하는 자동관측 시스템의 기상 모니터나 일반 천체관측 등에 범용으로 사용할 수 있을 것이다. 시험 결과, KAF-0401E, KAF-1602E, KAF-3200E, 각각의 CCD에 대하여 약 15초, 64초, 134초 정도의 영상 읽기 시간이 소요되었으며, 이는 병렬포트 전송속도의 한계로 인한 것이다. 따라서 보다 넓은 수광영역을 가진 CCD를 사용하기 위해서는 입출력 속도를 높일 필요가 있으며, 이를 위하여 USB 포트를 이용한 제어를 고려하고 있다.

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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Software Design of CQUEAN

  • 정현주;박원기;김은빈;최창수;박수종;임명신;김정훈
    • 천문학회보
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    • 제35권1호
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    • pp.39.1-39.1
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    • 2010
  • We are developing a CCD camera named CQUEAN (Camera for Quasars in Early Universe) to search for quasars at z > 7. CQUEAN has a 1024*1024 deep depletion CCD chip and will be attached to 2.1m Otto-Struve Telescope at McDonald Observatory, USA. Although commercial software for the CCD camera is provided by the vendor, we are going to develop our own software to control the other instruments as well, to carry out efficient observation. There are four major parts in our software: Instrument control part controls the camera and filter wheel to obtain imaging data. Quick look window is to display acquired imaging data for quick inspection. Telescope control part interfaces with Telescope Control System (TCS) to move the telescope and to get time or coordinate information. Finally, Observation scripting facility part carries out a series of short exposures in a batch. The whole software will be written in python on linux platform, using the instrument control software libraries provided by the vendors.

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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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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.

CCD-camera guiding of a vehicle robot

  • Arifin, Muhidin;Mori, Shingo;Komatsu, Noriyuki;Hayase, Minoru
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1993년도 한국자동제어학술회의논문집(국제학술편); Seoul National University, Seoul; 20-22 Oct. 1993
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    • pp.240-244
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    • 1993
  • There are so many types of sensors which have been developed in order to construct intelligence robots. This paper presents the study of the movement of a vehicle robot using a CCD-Camera. The CCD-Camera is used as a sensor to control a vehicle robot in a stable movement. This vehicle robot is called CVR. The system is the combination of the CCD-Camera, the vehicle robot and a dedicated software controller. The stability of CVR is proven by studying the movement methodology. The performance of the movement is experimented.

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천문대 극미광영상장비의 성능 시험 (PERFORMANCE TEST OF THE KAO CCD IMAGING SYSTEM)

  • 진호;한원용;이서구;이우백
    • 천문학논총
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    • 제13권1호
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    • pp.99-109
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    • 1998
  • Korea Astronomy Observatory (KAO) recently developed a new model of CCD imaging system for astronomical purpose. This paper presents system structure and electrical circuit descriptions with the performance of the CCD imaging system. The developed system can handle astronomical image acquisition with additional functions of on-chip binning, sub-image acquisition using a SITe $1024\times1024$ CCD chip. Particularly the controller design of the system allows us great flexibility and versatility with the software system control and it is possible to cope with any format CCDs by any manufactures, in principle. The system performances are derived by mean variance test in our laboratory, which shows that the total system noise 10.5e-(R.M.S), Gain 1.9e-/ ADD, non-linearity $0.37\%$

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MRP 시스템의 신뢰성을 위한 객체재향 컴포넌트 개발 사례 (- A Case Study on OOP Component Build-up for Reliability of MRP System -)

  • 서장훈
    • 대한안전경영과학회지
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    • 제6권3호
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    • pp.211-235
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    • 2004
  • Component based design is perceived as a key technology for developing advanced real-time systems in a both cost- and time effective manner. Already today, component based design is seen to increase software productivity, by reducing the amount of effort needed to update and maintain systems, by packaging solutions for re-use, and easing distribution. Nowdays, a thousand and one companies in If(Information Technology) industry such as Sl(System Integration) and software development companies, regardless of scale of their projects, has spent their time and endeavor on developing reusable business logic. The component software is the outcome of software developers effort on overcoming this problem; the component software is the way propositioned for quick and easy implementation of software. In addition, there has been lots of investment on researching and developing the software development methodology and leading If companies has released new standard technologies to help with component development. For instance, COM(Component Object Model) and DCOM(Distribute COM) technology of Microsoft and EJB(Enterprise Java Beans) technology of Sun Microsystems has turned up. Component-Based Development (CBD) has not redeemed its promises of reuse and flexibility. Reuse is inhibited due to problems such as component retrieval, architectural mismatch, and application specificness. Component-based systems are flexible in the sense that components can be replaced and fine-tuned, but only under the assumption that the software architecture remains stable during the system's lifetime. In this paper, It suggest that systems composed of components should be generated from functional and nonfunctional requirements rather than being composed out of existing or newly developed components. about implements and accomplishes the modeling for the Product Control component development by applying CCD(Contract-Collaboration Diagram), one of component development methodology, to MRP(Material Requirement Planning) System

DESIGN CONCEPT FOR SINGLE CHIP MOSAIC CCD CONTROLLER

  • HAN WONYONG;JIN Ho;WALKER DAVID D.;CLAYTON MARTIN
    • 천문학회지
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    • 제29권spc1호
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    • pp.389-390
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    • 1996
  • The CCDs are widely used in astronomical observations either in direct imaging use or spectroscopic mode. However, the areas of available sensors are too small for large imaging format. One possibility to obtain large detection area is to assemble mosaics of CCD, and drive them simultaneously. Parallel driving of many CCDs together rules out the possibility of individual tuning; however, such optimisation is very important, when the ultimate low light level performance is required, particularly for new, or mixed devices. In this work, a new concept is explored for an entirely novel approach, where the drive waveforms are multiplexed and interleaved. This simultaneously reduces the number of leadout connections and permits individual optimisation efficiently. The digital controller can be designed within a single EPLD (Erasable Programmable Logic Device) chip produced by a CAD software package, where most of the digital controller circuits are integrated. This method can minimise the component. count., and improve the system efficiency greatly, based on earlier works by Han et a1. (1996, 1994). The system software has an open architecture to permit convenient modification by the user, to fit their specific purposes. Some variable system control parameters can be selected by a user with a wider range of choice. The digital controller design concept allows great flexibility of system parameters by the software, specifically for the compatibility to deal with any number of mixed CCDs, and in any format, within the practical limit.

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