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윤요나,이용삼,chunhweykim,김영기,임홍서,한원용,정장해 한국우주과학회 2012 Journal of Astronomy and Space Sciences Vol.29 No.4
Astronomical Observations at Chungbuk National University Observatory (CBNUO) with an 1 m telescope have begun since April 2008, and Near-Earth Space Survey observations also have been started since November 2010, with a 0.6 m wide field telescope developed by Korea Astronomy and Space Science Institute. To improve observational efficiency, we developed a weather monitoring system enabling automatic monitoring for the weather conditions and checking the status of the observational circumstances, such as dome status. We hope this weather monitoring system can be helpful to more than 100 Korean domestic observatories, including public outreach facilities. In this paper, we present the statistic analysis of the weather conditions collected at CBNUO for 3 years (2009- 2011) and comparisons were made for clear nights between using only humidity data and both humidity and cloud data.
태양전파 교란 실시간 모니터링 시스템 구축 I. 전파망원경 구동시스템
윤요나,김용기,이충욱,차상목 한국우주과학회 2004 Journal of Astronomy and Space Sciences Vol.21 No.2
As the first step of the real time monitoring system of the solar radio disturbance, we constructed the control system of the solar radio telescope. An 1.8m antenna built by Korean Astronomy Observatory has been used, and the observed radio flux is transformed to the digital signal by the powermeter. We have also developed a computer program CBNUART in order to control the telescope system and the powermeter. As the sun rises, the telescope begins to observe the sun, and ends the observation automatically at sunset. The CBNUART enables the telescope automatically to go to the position of the sunrise for the beginning the observation and come back to the setposition after the ending the observation at the sunset. An active tracking routine is adopted in order to improve the tracking accuracy of the control system, and we used an optical telescope equipped in front of the antenna for control test. The tracking test shows that our control system can track with the accuracy of arc seconds, and the 50 minute pointing test shows that the pointing accuracy of right ascension and declination are 1.12 and 0.08 arc minutes respectively.
윤요나,김용기,김동현,임홍서 한국우주과학회 2013 Journal of Astronomy and Space Sciences Vol.30 No.4
The purpose of this study is to develop an observation program for obtaining effective flat images that are necessary for photometric observation. The development of the program was achieved by improving the existing method for obtaining twilight flat images. The existing method for obtaining twilight flat images acquires flat images by observing the sky light after sunset or light before sunrise. The decision of when to observe flat images at each night is solely dependent on the judgment of an observer, and thus the obtained flat images for particular nights may not be clean. Especially, in the case of the observatories where an automated observation system is in operation, there is a difficulty that an observer should pay attention during sunrise and sunset in order to obtain flat images. In this study, a computer program is developed to improve this inconvenience and to efficiently perform photometric observation in the observatories where an automated observation system is applied. This program can obtain flat images by calculating the time for obtaining flat images automatically and the exposure time using a numerically calculated function. When obtaining twilight flat images at dusk and at dawn, the developed program performs automated observation and provides effective flat images by acquiring appropriate exposure time considering the sunrise and sunset times that vary depending on the day of observation. The code for performing this task was added to Obs Tool II (Yoon et al. 2006), which is the automated observation system of the Chungbuk National University Observatory, and the usefulness of the developed program was examined by performing an actual automated observation. If this program is applied to other observatories where automated observation is in operation, it is expected that stable and highquality flat images could be obtained, which can be used for the pre-processing of photometric observation data.
실시간 비디오 스트리밍 서비스를 위한 선별적 비디오 암호화 방법의 전송지연 저감 연구
윤요한,고경민 한국정보통신학회 2021 한국정보통신학회논문지 Vol.25 No.4
Real-time video streaming scheme for multimedia content delivery and remote conference services is one of technologies that are significantly sensitive to data transmission delay. Recently, because of COVID-19, real-time video streaming contents for the services are significantly increased such as personal broadcasting and remote school class. In order to support the services, there is a growing emphasis on low transmission delay and secure content delivery, respectively. Therefore, our research proposed a packet aggregation algorithm to reduce the transmission delay of selectively encrypted video transmission for real-time video streaming services. Through the application of the proposed algorithm, the selectively encrypted video framework can control the amount of MPEG-2 TS packets for low latency transmission with a consideration of packet priorities. Evaluation results on testbed show that the application of the proposed algorithm to the video framework can reduce approximately 11% of the transmission delay for high and low resolution video. 실시간 비디오 스트리밍은 컨텐츠 전달 및 원격회의 등에 사용되는 기술로, 전송지연에 민감한 기술 중 하나이다. 최근 코로나바이러스 감염증(COVID-19)으로 인해 개인방송/원격회의와 같은 개인이 제작 및 이용하는 컨텐츠들이 증가하면서, 실시간 비디오 스트리밍 시 전송지연 저감과 더불어 스트리밍 되는 컨텐츠에 대한 보호의 필요성이 강조되고 있다. 따라서, 본 연구에서는 실시간 비디오 스트리밍에 선별적 비디오 암호화 방법을 적용할 경우 발생하는 전송지연을 저감하기 위한 패킷 응집 관련 알고리즘을 제안하였다. 제안 방법은 선별적 비디오 암호화 프레임워크에서 패킷 단위로 재배치된 비디오 데이터 전송 시 한 번에 전송되는 크기의 조절이 가능하도록 개선하였으며, 실제 테스트베드를 통한 실험결과는 제안 방법 적용 시 기존대비 전송지연을 약 11% 저감할 수 있음을 보여주었다.