http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
A New Pivot Algorithm for Star Identification
Jakyoung Nah,Yu Yi,Yong Ha Kim 한국우주과학회 2014 Journal of Astronomy and Space Sciences Vol.31 No.3
In this study, a star identification algorithm which utilizes pivot patterns instead of apparent magnitude information was developed. The new star identification algorithm consists of two steps of recognition process. In the first step, the brightest star in a sensor image is identified using the orientation of brightness between two stars as recognition information. In the second step, cell indexes are used as new recognition information to identify dimmer stars, which are derived from the brightest star already identified. If we use the cell index information, we can search over limited portion of the star catalogue database, which enables the faster identification of dimmer stars. The new pivot algorithm does not require calibrations on the apparent magnitude of a star but it shows robust characteristics on the errors of apparent magnitude compared to conventional pivot algorithms which require the apparent magnitude information.
Development of Optical System for ARGO-M
Nah, Jakyoung,Jang, Jung-Guen,Jang, Bi-Ho,Han, In-Woo,Han, Jeong-Yeol,Park, Kwijong,Lim, Hyung-Chul,Yu, Sung-Yeol,Park, Eunseo,Seo, Yoon-Kyung,Moon, Il-Kwon,Choi, Byung-Kyu,Na, Eunjoo,Nam, Uk-Won 한국우주과학회 2013 Journal of Astronomy and Space Sciences Vol.30 No.1
ARGO-M is a satellite laser ranging (SLR) system developed by the Korea Astronomy and Space Science Institute with the consideration of mobility and daytime and nighttime satellite observation. The ARGO-M optical system consists of 40 cm receiving telescope, 10 cm transmitting telescope, and detecting optics. For the development of ARGO-M optical system, the structural analysis was performed with regard to the optics and optomechanics design and the optical components. To ensure the optical performance, the quality was tested at the level of parts using the laser interferometer and ultra-high-precision measuring instruments. The assembly and alignment of ARGO-M optical system were conducted at an auto-collimation facility. As the transmission and reception are separated in the ARGO-M optical system, the pointing alignment between the transmitting telescope and receiving telescope is critical for precise target pointing. Thus, the alignment using the ground target and the radiant point observation of transmitting laser beam was carried out, and the lines of sight for the two telescopes were aligned within the required pointing precision. This paper describes the design, structural analysis, manufacture and assembly of parts, and entire process related with the alignment for the ARGO-M optical system.
A New Pivot Algorithm for Star Identification
Nah, Jakyoung,Yi, Yu,Kim, Yong Ha The Korean Space Science Society 2014 Journal of Astronomy and Space Sciences Vol.31 No.3
In this study, a star identification algorithm which utilizes pivot patterns instead of apparent magnitude information was developed. The new star identification algorithm consists of two steps of recognition process. In the first step, the brightest star in a sensor image is identified using the orientation of brightness between two stars as recognition information. In the second step, cell indexes are used as new recognition information to identify dimmer stars, which are derived from the brightest star already identified. If we use the cell index information, we can search over limited portion of the star catalogue database, which enables the faster identification of dimmer stars. The new pivot algorithm does not require calibrations on the apparent magnitude of a star but it shows robust characteristics on the errors of apparent magnitude compared to conventional pivot algorithms which require the apparent magnitude information.
나자경(Jakyoung Nah),이유(Yu Yi),김용하(Yong Ha Kim) 한국항공우주학회 2005 韓國航空宇宙學會誌 Vol.33 No.9
이 논문에서는 주간 항법용 별센서의 실제 활용을 목적으로 주간 대기 조건과 주간 별 감지 가능성을 논한다. 주간동안의 대기 자료를 구하기 위해 표준 대기 모델(LOWTRAN 7)을 사용했으며 그 모델로부터 배경하늘에 대한 복사와 대기투과도를 구하였다. 대기 복사량을 감소시키기 위해 광학 필터를 장착한 별센서를 가정했으며 태양 복사 효과를 나타내기 위해 별센서와 태양 사이의 다양한 분리각을 설정하였다. 별센서의 FOV에 대한 고려로서, 하늘 배경 복사의 변화와 감지가능한 별의 개수 밀도를 분석하였다. 또한 요구되는 신호 대 잡음비를 얻기 위한 노출시간과 별센서의 주간 활용 한계로서 작용하는 CCD의 복사에 의한 전자 수를 계산하였다. This paper discusses the daytime atmospheric conditions and the possibility of daytime star detection with the purpose of practical use of the star sensor for daylight navigation. In order to estimate the daytime atmospheric data, we use the standard atmospheric model (LOWTRAN 7), from which atmospheric transmittance and radiance from background sky are calculated. Assuming the star sensor with an optical filter to reduce background radiation, different separation angles between the star sensor and the sun are set up to express the effect of the solar radiation. As considerations of field of view (FOV) of the star sensor, the variation of the sky background radiation and the star density of the detectable star are analyzed. In addition, the integration time to achieve a required signal-to-noise ratio and the number of the radiation-caused electrons of the charge coupled detector(CCD) working as the limit to daylight application of the star sensor are calculated.
Precise Prediction of Optical Performance for Near Infrared Instrument Using Adaptive Fitting Line
Ko, Kyeongyeon,Han, Jeong-Yeol,Nah, Jakyoung,Oh, Heeyoung,Yuk, In-Soo,Park, Chan,Chun, Moo-Young,Oh, Jae Sok,Kim, Kang-Min,Lee, Hanshin,Jeong, Ueejeong,Jaffe, Daniel T. 한국우주과학회 2013 Journal of Astronomy and Space Sciences Vol.30 No.4
Infrared optical systems are operated at low temperature and vacuum (LT-V) condition, whereas the assembly and alignment are performed at room temperature and non-vacuum (RT-NV) condition. The differences in temperature and pressure between assembly/alignment environments and operation environment change the physical characteristics of optical and opto-mechanical parts (e.g., thickness, height, length, curvature, and refractive index), and the resultant optical performance changes accordingly. In this study, using input relay optics (IO), among the components of the Immersion GRating INfrared Spectrograph (IGRINS) which is an infrared spectrograph, a simulation based on the physical information of this optical system and an actual experiment were performed; and optical performances in the RT-NV, RT-V, and LT-V environments were predicted with an accuracy of 0.014±0.007 λ rms WFE, by developing an adaptive fitting line. The developed adaptive fitting line can quantitatively control assembly and alignment processes below λ/70 rms WFE. Therefore, it is expected that the subsequent processes of assembly, alignment, and performance analysis could not be repeated.