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류동영,Dong Young Rew 한국우주과학회 2023 우주기술과 응용 Vol.3 No.3
In contrast to the short-term nature of lunar missions in the past, lunar missions in new space era aim to extend the presence on the lunar surface and to use this capability for the Mars exploration. In order to realize extended human presence on the Moon, production and use of consumables and fuels required for the habitation and transportation using in-situ resources is an important prerequisite. The Global Exploration Roadmap presented by the International Space Exploration Coordination Group (ISECG), which reflects the space exploration plans of participating countries, shows the phases of progress from lunar surface exploration to Mars exploration and relates in-situ resource utilization (ISRU) capabilities to each phase. Based on the ISRU Gap Assessment Report from the ISECG, ISRU technology is categorized into in-situ propellant and consumable production, in-situ construction, in-space manufacturing, and related areas such as storage and utilization of products, power systems required for resource utilization. Among the lunar resources, leading countries have prioritized the utilization of ice water existing in the permanent shadow region near the lunar poles and the extraction of oxygen from the regolith, and are preparing to investigate the distribution of resources and ice water near the lunar south pole through unmanned landing missions. Resource utilization technologies such as producing hydrogen and oxygen from water by hydroelectrolysis and extracting oxygen from the lunar regolith are being developed and tested in relevant lunar surface analogue environments. It is also observed that each government emphasizes the use and development of the private sector capabilities for sustainable lunar surface exploration by purchasing lunar landing services and providing opportunities to participate in resource exploration and material extraction.
류동영(Rew Dong-Young),주광혁(Ju Gwanghyeok),김성훈(Kim Sung-Hoon),이상률(Lee Sang-Ryool) 한국항공우주연구원 2010 항공우주산업기술동향 Vol.8 No.1
본 논문에서는 최근에 다른 나라에서 진행된 무인 달 착륙선의 설계에 대한 사례 조사를 수행하고 이를 통하여 무인 달 착륙선의 설계 동향을 파악하였다. 무인 달 착륙선으로는 일본의 SELENE-2, 유럽의 LEDA와 MoonNEXT, 미국의 모듈형 소형 우주선을 이용한 달 탐사, 그리고 미국이 제안한 국제 달 탐사 네트워크의 미국 노드인 Anchor Nodes의 임무 수행을 위하여 설계된 달 착륙선 등을 조사의 대상으로 하였다. 각 조사 대상의 착륙선에 대하여 임무 요구 조건을 확인 하고, 임무 설계의 내용을 조사 하였다. 또 한 달 표면에 안전하게 착륙하기 위한 유도제어의 방법, 센서의 구성, 임무 요구 사양을 만족하기 위하여 선정한 센서 및 구동기의 성능 사양 등을 분석하였다. In this paper, recent researches about the unmanned lunar lander development are studied. Objectives of this study are to derive research trends and to identify key design activities especially in early design phase of unmanned lunar lander. Case study covers SELENE-2 of Japan, LEDA and MoonNEXT of ESA, and small and modular spacecraft approach of NASA. Lunar lander concepts proposed for the International Lunar Network Anchor Nodes are also studied. For each lunar lander program, mission requirements are summarized and mission design results are reviewed. Approaches of safe lunar landing including design of navigation, guidance and control, combination of sensors, derived sensor and propulsion performance requirements are also analyzed.