Abstract
2004년 9월 러시아 발사체 "디네플"에 의해 발사 예정인 초소형위성 HAUSAT-1의 비행 모델 개발이 완료되어 초소형위성 전개기 P-POD (Poly Picosatellite Orbital Deployer) 에 장착하기 위해 미국으로 이송할 예정이다. HAUSAT-1 위성개발을 통하여 설계, 제작 및 시험을 한 단일보드 탑재컴퓨터는 다른 초소형위성의 탑재컴퓨터와는 다른 고성능의 특성을 갖고 있다. 다기능의 컨트롤러와 SPI 와 1-Wire와 같은 최근의 접속기술을 사용하여 하니스의 단순화와 시스템의 크기 및 질량을 최소화 하였다. 또한 우주방사환경에 의한 장애 발생에 대처하도록 장애복구 시스템을 적용하였다. HAUSAT-1의 비행 모델용 탑재컴퓨터는 현재 모든 가능시험과 환경시험을 마친 상태이며, 본 논문에서는 이들 성능/기능시험 결과와 랜덤진동시험 및 열진공시험 결과를 논의한다. Flight and Qualification Models of Single Board Computer (SBC), called On-Board Computer (OBC), for HAUSAT-l picosatellite, which is scheduled to launch on September, 2004 by Russian "Dnepr" launch vehicle, have been developed. The OBC of HAUSAT-1 has been designed with some improved features compared to other picosatellites. A multifunctional controller and up-to-date SPI (Serial Peripheral Interface) and 1-Wire interface are implemented to simplify the harness routing and to minimize the mass and size of OBC. The improved fault-tolerant architecture design methodology is incorporated in the HAUSAT-1 OBC to protect against space radiation environment. The functions of the OBC were fully tested and verified by the Electrical Test Bed (ETB) model. This paper is also addressing the environmental test results, such as random vibration and thermal vacuum tests.
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More From: Journal of the Korean Society for Aeronautical & Space Sciences
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