• 제목/요약/키워드: Mars Exploration Rovers

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A Study on the Autonomous Navigation of Rovers for Mars Surface Exploration

  • Kim, Han-Dol;Kim, Byung-Kyo
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.38.3-38
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    • 2001
  • In the planetary surface exploration , micro-rovers or nano-rovers are very attractive choices for a surface exploration system providing mobility functions and other features required in the surface probe missions at small mass and relatively small cost. This paper surveys and summarizes the requirements for Mars exploration rovers in micro or nano scale and outlines the control concepts for navigation including the obstacle/hazard avoidance and the path planning. In this context, autonomous reaction capabilities are the key elements to control design in conjunction with the remote control schemes to deal with the significant signal propagation delays. Other navigation and control aspects such as the instrument fine positioning and the flip-over of the rovers are also briefly introduced. The current technical limitations of the micro- and nano-rovers are summarized.

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A Case Study in the Mars Landing Site Selection for Science Objects

  • Seo, Haingja;Kim, Eojin;Kim, Joo Hyeon;Lee, Joo Hee;Choi, Gi-Hyuk;Sim, Eun-Sup
    • Journal of Astronomy and Space Sciences
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    • 제29권4호
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    • pp.375-380
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    • 2012
  • It is a crucial matter to select a landing site for landers or rovers in planning the Mars exploration. The landing site must have not only a scientific value as a landing site, but also geographical features to lead a safe landing for Mars probes. In this regard, this study analyzed landing site of Mars probes and rovers in previous studies and discussed the adequacy of the landing site to scientific missions. Moreover, this study also examined domestic studies on the Mars. The frameworks of these studies will guide the selection of exploration sites and a landing site when sending Mars probe to the Mars through our own efforts. Additionally, this paper will be used as the preliminary data for selection of exploration site and a landing site.

우주로버의 개발현황과 국내의 관련기술 현황 (Space Rover Development and Domestic Technology)

  • 안석민;이융교;김성필;김태식;문상만
    • 항공우주산업기술동향
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    • 제6권1호
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    • pp.27-34
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    • 2008
  • 우주 탐사의 목적 중 하나가 우주가 가지고 있는 무한한 자원의 활용임에 틀림없다. 이를 위해 선진국들은 달이나 화성에 우주기지 건설 등을 계획하고 있다. 자원탐사와 우주기지 건설을 위해서는 토양탐사가 필요하며 이를 위해 착륙선이나 로버의 활용은 필수불가결한 것이다. 우리나라도 로버를 포함한 달착륙선을 자력으로 달에 보내기 위해서는 발사체 개발 등이 우선적으로 해결되어야 하는 사항이다. 또한, 우리나라는 국제적으로 공인하는IT의 강국이며 이를 최대한 활용하여 달탐사 로버를 우주에 보낼 수 있는 기반기술이 상당부분 준비되어 있다. 다만,우주환경에 적합한 로버를 개발하는 일은, 선진국의 예에서도 볼 수 있듯, 단순한 로봇 기술만으로 될 수 있는 일은 아니다. 본 논문에서는, 해외에서 개발된 달과 화성의 로버와 현재 개발되고 있는 로버들의 현황 및 국내의 로봇 기술현황을 분석함으로써, 향후 달 탐사 로버의 개발에 구체적인 사항들이 반영될 수 있도록 하였다.

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Opportunity Rover's image analysis: Microbialites on Mars?

  • Bianciardi, Giorgio;Rizzo, Vincenzo;Cantasano, Nicola
    • International Journal of Aeronautical and Space Sciences
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    • 제15권4호
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    • pp.419-433
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    • 2014
  • The Mars Exploration Rover Opportunity investigated plains at Meridiani Planum, where laminated sedimentary rocks are present. The Opportunity rover's Athena morphological investigation showed microstructures organized in intertwined filaments of microspherules: a texture we have also found on samples of terrestrial (biogenic) stromatolites and other microbialites. We performed a quantitative image analysis to compare images (n=45) of microbialites with the images (n=30) photographed by the rover (corresponding, approximately, to 25,000/15,000 microstructures). Contours were extracted and morphometric indexes were obtained: geometric and algorithmic complexities, entropy, tortuosity, minimum and maximum diameters. Terrestrial and Martian textures present a multifractal aspect. Mean values and confidence intervals from the Martian images overlapped perfectly with those from the terrestrial samples. The probability of this occurring by chance is $1/2^8$, less than p<0.004. Terrestrial abiogenic pseudostromatolites showed a simple fractal structure and different morphometric values from those of the terrestrial biogenic stromatolite images or Martian images with a less ordered texture (p<0.001). Our work shows the presumptive evidence of microbialites in the Martian outcroppings: i.e., the presence of unicellular life on the ancient Mars.

우주 행성 탐사 로버 등판 시험장 설계 (Space Planet Exploration Rover Climbing Test Site Design)

  • 유병현
    • 한국지반신소재학회논문집
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    • 제22권4호
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    • pp.1-8
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    • 2023
  • 우주 탐사는 인류의 과학적 노력 중 가장 선두에 있으며, 행성 탐사 로버는 행성 지표면을 연구하는 핵심 장비이다. 행성 로버의 성능은 가파른 경사와 다양한 행성 지형을 탐지하고 통과하는 데 큰 영향을 미치며 특히 달과 같은 행성에서는 급격한 경사와 연약한 지면을 안전하게 등반하고 이동할 수 있는 능력이 필수적으로 요구된다. 이 논문에서는 우주 행성 탐사 로버가 직면하는 가파른 지형과 연약한 지면을 모사하는 등반 시험장의 설계와 검증 방법을 종합적으로 소개한다. 먼저 달의 크레이터 지역의 지형 특성과 탐사의 중요성을 간략히 설명하고, 기존 등반 시험장의 개발 사례를 살펴보며, 현재 한국건설기술연구원에서 운영 중인 지반열진공챔버 내에 설치 예정인 등반 시험장의 설계 과정을 설명한다. 본 연구에서 제안하는 등반 시험장이 개발되면 실제 달의 환경과 유사한 고진공, 극한 온도 조건에서 로버의 이동과 탐사 능력을 정밀하게 평가할 수 있을 것으로 기대된다.

달 탐사 로버의 적응형 움직임 가중치에 따른 스테레오 준직접방식 비주얼 오도메트리 (Stereo Semi-direct Visual Odometry with Adaptive Motion Prior Weights of Lunar Exploration Rover)

  • 정재형;허세종;박찬국
    • 한국항공우주학회지
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    • 제46권6호
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    • pp.479-486
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    • 2018
  • 위성항법시스템이 없는 달 표면에서 탐사 로버의 신뢰성 있는 항법성능을 확보하기 위해 관성측정장치나 카메라와 같은 추가적인 센서를 활용한 항법 알고리즘이 필수적이다. 일례로 미국의 화성 탐사 로버에 스테레오 카메라를 이용한 비주얼 오도메트리(VO)가 성공적으로 사용된 바 있다. 본 논문에서는 달 유사환경의 스테레오 흑백 이미지를 입력받아 달 탐사 로버의 6 자유도 움직임을 추정하였다. 제안하는 알고리즘은 희소 이미지 정렬 기반의 준직접방식 VO를 통해 연속된 이미지간의 상대 움직임을 추정한다. 또한 비선형성에 취약한 직접방식 VO를 보완하고자 최적화 시 로버의 움직임에 따른 가중치를 비용 함수에 고려하였고, 그 가중치는 이전 단계에서 계산된 포즈의 선형 함수로 제안한다. 본 논문에서 제안하는 로버의 움직임에 따른 가중치를 통해 실제 달 환경의 특성을 반영하는 토론토 대학의 달 유사환경 데이터셋에서 VO 성능이 향상됨을 확인하였다.

Development of a New Pressure-Sinkage Model for Rover Wheel-Lunar Soil Interaction based on Dimensional Analysis and Bevameter Tests

  • Lim, Yujin;Le, Viet Dinh;Bahati, Pierre Anthyme
    • Journal of Astronomy and Space Sciences
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    • 제38권4호
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    • pp.237-250
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    • 2021
  • A rover is a planetary surface exploration device designed to move across the ground on a planet or a planetary-like body. Exploration rovers are increasingly becoming a vital part of the search for scientific evidence and discoveries on a planetary satellite of the Sun, such as the Moon or Mars. Reliable behavior and predictable locomotion of a rover is important. Understanding soil behavior and its interaction with rover wheels-the terramechanics-is of great importance in rover exploration performance. Up to now, many researchers have adopted Bekker's semiempirical model to predict rover wheelsoil interaction, which is based on the assumption that soil is deformable when a pressure is applied to it. Despite this basic assumption of the model, the pressure-sinkage relation is not fully understood, and it continues to present challenges for rover designers. This article presents a new pressure-sinkage model based on dimensional analysis (DA) and results of bevameter tests. DA was applied to the test results in order to propose a new pressure-sinkage model by reducing physical quantitative parameters. As part of the work, a new bevameter was designed and built so that it could be successfully used to obtain a proper pressure-sinkage relation of Korean Lunar Soil Simulant (KLS-1). The new pressure-sinkage model was constructed by using three different sizes of flat plate diameters of the bevameter. The newly proposed model was compared successfully with other models for validation purposes.

Study on a Suspension of a Planetary Exploration Rover to Improve Driving Performance During Overcoming Obstacles

  • Eom, We-Sub;Kim, Youn-Kyu;Lee, Joo-Hee;Choi, Gi-Hyuk;Sim, Eun-Sup
    • Journal of Astronomy and Space Sciences
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    • 제29권4호
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    • pp.381-387
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    • 2012
  • The planetary exploration rover executes various missions after moving to the target point in an unknown environment in the shortest distance. Such missions include the researches for geological and climatic conditions as well as the existence of water or living creatures. If there is any obstacle on the way, it is detected by such sensors as ultrasonic sensor, infrared light sensor, stereo vision, and laser ranger finder. After the obtained data is transferred to the main controller of the rover, decisions can be made to either overcome or avoid the obstacle on the way based on the operating algorithm of the rover. All the planetary exploration rovers which have been developed until now receive the information of the height or width of the obstacle from such sensors before analyzing it in order to find out whether it is possible to overcome the obstacle or not. If it is decided to be better to overcome the obstacle in terms of the operating safety and the electric consumption of the rover, it is generally made to overcome it. Therefore, for the purpose of carrying out the planetary exploration task, it is necessary to design the proper suspension system of the rover which enables it to safely overcome any obstacle on the way on the surface in any unknown environment. This study focuses on the design of the new double 4-bar linkage type of suspension system applied to the Korea Aerospace Research Institute rover (a tentatively name) that is currently in the process of development by our institute in order to develop the planetary exploration rover which absolutely requires the capacity of overcoming any obstacle. Throughout this study, the negative moment which harms the capacity of the rover for overcoming an obstacle was induced through the dynamical modeling process for the rocker-bogie applied to the Mars exploration rover of the US and the improved version of rocker-bogie as well as the suggested double 4-bar linkage type of suspension system. Also, based on the height of the obstacle, a simulation was carried out for the negative moment of the suspension system before the excellence of the suspension system suggested through the comparison of responding characteristics was proved.