• 제목/요약/키워드: planetary Exploration

검색결과 47건 처리시간 0.038초

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.

Flight Dynamics and Navigation for Planetary Missions in Korea: Past Efforts, Recent Status, and Future Preparations

  • Song, Young-Joo;Lee, Donghun;Bae, Jonghee;Kim, Young-Rok;Choi, Su-Jin
    • Journal of Astronomy and Space Sciences
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    • 제35권3호
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    • pp.119-131
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    • 2018
  • In spite of a short history of only 30 years in space development, Korea has achieved outstanding space development capabilities, and became the $11^{th}$ member of the "Space Club" in 2013 by launching its own satellites with its own launch vehicle from a local space center. With the successful development and operation of more than 10 earth-orbiting satellites since 1999, Korea is now rapidly expanding its own aspirations to outer space exploration. Unlike earth-orbiting missions, planetary missions are more demanding of well-rounded technological capabilities, specifically trajectory design, analysis, and navigation. Because of the importance of relevant technologies, the Korean astronautical society devoted significant efforts to secure these basic technologies from the early 2000s. This paper revisits the numerous efforts conducted to date, specifically regarding flight dynamics and navigation technology, to prepare for future upcoming planetary missions in Korea. However, sustained efforts are still required to realize such challenging planetary missions, and efforts to date will significantly advance the relevant Korean technological capabilities.

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.

ShadowCam Instrument and Investigation Overview

  • Mark Southwick Robinson;Scott Michael Brylow;Michael Alan Caplinger;Lynn Marie Carter;Matthew John Clark;Brett Wilcox Denevi;Nicholas Michael Estes;David Carl Humm;Prasun Mahanti;Douglas Arden Peckham;Michael Andrew Ravine;Jacob Andrieu Schaffner;Emerson Jacob Speyerer;Robert Vernon Wagner
    • Journal of Astronomy and Space Sciences
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    • 제40권4호
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    • pp.149-171
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    • 2023
  • ShadowCam is a National Aeronautics and Space Administration Advanced Exploration Systems funded instrument hosted onboard the Korea Aerospace Research Institute (KARI) Korea Pathfinder Lunar Orbiter (KPLO) satellite. By collecting high-resolution images of permanently shadowed regions (PSRs), ShadowCam will provide critical information about the distribution and accessibility of water ice and other volatiles at spatial scales (1.7 m/pixel) required to mitigate risks and maximize the results of future exploration activities. The PSRs never see direct sunlight and are illuminated only by light reflected from nearby topographic highs. Since secondary illumination is very dim, ShadowCam was designed to be over 200 times more sensitive than previous imagers like the Lunar Reconnaissance Orbiter Camera Narrow Angle Camera (LROC NAC). ShadowCam images thus allow for unprecedented views into the shadows, but saturate while imaging sunlit terrain.

A Brief Introduction of Current and Future Magnetospheric Missions

  • Yukinaga Miyashita
    • 우주기술과 응용
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    • 제3권1호
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    • pp.1-25
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    • 2023
  • In this paper, I briefly introduce recently terminated, current, and future scientific spacecraft missions for in situ and remote-sensing observations of Earth's and other planetary magnetospheres as of February 2023. The spacecraft introduced here are Geotail, Cluster, Time History of Events and Macroscale Interactions during Substorms / Acceleration, Reconnection, Turbulence, and Electrodynamics of the Moon's Interaction with the Sun (THEMIS / ARTEMIS), Magnetospheric Multiscale (MMS), Exploration of energization and Radiation in Geospace (ERG), Cusp Plasma Imaging Detector (CuPID), and EQUilibriUm Lunar-Earth point 6U Spacecraft (EQUULEUS) for recently terminated or currently operated missions for Earth's magnetosphere; Lunar Environment Heliospheric X-ray Imager (LEXI), Gateway, Solar wind Magneto-sphere Ionosphere Link Explorer (SMILE), HelioSwarm, Solar-Terrestrial Observer for the Response of the Magnetosphere (STORM), Geostationary Transfer Orbit Satellite (GTOSat), GEOspace X-ray imager (GEO-X), Plasma Observatory, Magnetospheric Constellation (MagCon), self-Adaptive Magnetic reconnection Explorer (AME), and COnstellation of Radiation BElt Survey (CORBES) approved for launch or proposed for future missions for Earth's magnetosphere; BepiColombo for Mercury and Juno for Jupiter for current missions for planetary magnetospheres; Jupiter Icy Moons Explorer (JUICE) and Europa Clipper for Jupiter, Uranus Orbiter and Probe (UOP) for Uranus, and Neptune Odyssey for Neptune approved for launch or proposed for future missions for planetary magnetospheres. I discuss the recent trend and future direction of spacecraft missions as well as remaining challenges in magnetospheric research. I hope this paper will be a handy guide to the current status and trend of magnetospheric missions.

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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행성 표면탐사를 위한 블랙보드 구조를 가진 멀티에이전트 루버 시스템 (Multi-Agent Rover System with Blackboard Architecture for Planetary Surface Soil Exploration)

  • 딜루사;최석규;김희숙
    • 한국인터넷방송통신학회논문지
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    • 제19권2호
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    • pp.243-253
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    • 2019
  • 행성 탐사의 첫 번째 단계는 일반적으로 자율적 탐사선을 사용하여 수행된다. 이 탐사선은 자신의 길을 찾고 행성표면에 대한 실험을 수행 할 수 있다. 이 논문에서는 각 에이전트의 지식과 노력을 공유하기 위해 블랙보드 시스템을 효과적으로 활용하는 다중 에이전트 시스템을 제안한다. 에이전트는 BDI (Belief Desire Intension) 모델의 조합으로 반응 모델을 사용하고 최단 거리를 계산하고 행성 표면에서 이동 경로를 계산하는 경로 찾기 알고리즘을 사용한다. 이 접근법은 짧은 시간 내에 주어진 지형에서 표면 탐사를 수행 할 수 있다. 블랙보드에 수집 된 정보는 상세한 표면 토양 변화 결과를 산출하는데 사용된다. 이 연구에서 제안된 다중 에이전트 시스템에 의한 탐사는 다양한 지형 크기별로 잘 수행되는 것으로 나타났다.

INVESTIGATION OF PAHs IN GALACTIC PLANETARY NEBULAE WITH THE AKARI/IRC AND THE SPITZER/IRS

  • Ohsawa, R.;Onaka, T.;Sakon, I.;Mori, T.I.;Yamamura, I.;Matsuura, M.;Kaneda, H.;Bernard-Salas, J.;Berne, O.;Joblin, C.
    • 천문학논총
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    • 제27권4호
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    • pp.259-260
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    • 2012
  • Polycyclic aromatic hydrocarbons (PAHs) in Galactic planetary nebulae (PNe) are investigated by means of the unidentified infrared (UIR) bands. Continuous near- to mid-infrared spectra of PNe are obtained with the AKARI/IRC and the Spitzer/IRS. All 19 PNe in the present study show prominent dust emissions and we investigate the variation in the intensity ratios among the UIR bands. The ionization fraction and the size distribution of PAHs in PNe are derived using the UIR band ratios. We find that the ionization fraction of PAHs in PNe is around 0.0-0.6 and that small PAHs are scarce. The present result indicates a systematic trend of the $3.4{\mu}m$ aliphatic feature to become weak as the PAH ionization fraction increases.