Simulation of Autonomous Grading of Lunar Surface

被引:0
|
作者
Bettemir, Onder Halis [1 ]
机构
[1] Inonu Univ, Dept Civil Engn, Malatya, Turkiye
关键词
earthwork; autonomous grading; simulation; cutting force; BATTERIES;
D O I
10.1109/RAST57548.2023.10197888
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Lunar missions of space agencies aim to set up permanent facilities on the surface of the Moon. Vast majority of the construction activities should be executed as unmanned because of the unsuitable habitat conditions of the Moon. In this study autonomous grading of Moon surface by an electric powered small scale dozer is examined. An autonomous grading algorithm is implemented for the grading task of a small region which is large enough to be an artifact base on the Moon. The autonomous grading algorithm takes rolling, tire penetration, grade, hauling of the earth pile, and cutting resistances into account. Gravity of the Moon is lower than the gravity of the Earth which causes skidding of the tires. The grading algorithm also takes the maximum applicable force and adjusts the earth pile in front of the dozer blade. Lead-acid battery powered and lithium-ion battery powered dozers are simulated in order to detect the efficiency of the construction machine. The simulation divides the excavation area into equal sized grids and computes the consumed time to work on each grid. The required force and the consumed energy are computed for each grid. The simulation iteratively updates the elevations of the grids and the iteration continues until the elevations of the grids become equal to the required elevation. Simulation revealed that lead-acid battery powered dozer is more suitable for the earthwork tasks on the Moon.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Autonomous robotic inspection for lunar surface operations
    Bualat, Maria
    Edwards, Laurence
    Fong, Terrence
    Broxton, Michael
    Flueckiger, Lorenzo
    Lee, Susan Y.
    Park, Eric
    To, Vinh
    Utz, Hans
    Verma, Vandi
    Kunz, Clayton
    MacMahon, Matt
    FIELD AND SERVICE ROBOTICS: RESULTS OF THE 6TH INTERNATIONAL CONFERENCE, 2008, 42 : 169 - +
  • [2] Cost and duration estimation of autonomous grading algorithm by simulation
    Bettemir, Onder Halis
    SIGMA JOURNAL OF ENGINEERING AND NATURAL SCIENCES-SIGMA MUHENDISLIK VE FEN BILIMLERI DERGISI, 2024, 42 (03): : 831 - 844
  • [3] SIMULATION OF MANNED LUNAR SURFACE OPERATIONS
    SEMINARA, JL
    JOURNAL OF SPACECRAFT AND ROCKETS, 1968, 5 (08) : 979 - &
  • [4] Numerical simulation of the temperature of lunar surface
    Cheng, Ke
    Zhang, He-Fei
    Yuhang Xuebao/Journal of Astronautics, 2007, 28 (05): : 1376 - 1380
  • [5] Lunar surface simulation modelling for vision-guided lunar landers
    Parkes, SM
    Martin, I
    Milne, I
    DASIA 99: DATA SYSTEMS IN AEROSPACE, 1999, 447 : 369 - 374
  • [6] Development of a Lunar Surface Environment Simulation Chamber
    Bonebrake, Jonathan
    Galles, Marc
    Space Simulation Conference 2024, 2024,
  • [7] Realistic virtual lunar surface simulation method
    VR Lab., CIM Institute, Shanghai Jiaotong Univ., Shanghai 200030, China
    Xitong Fangzhen Xuebao, 2007, 11 (2515-2518):
  • [8] Stereo Camera Simulation for Lunar Surface Photogrammetry
    Thompson, Ryan J.
    Danehy, Paul M.
    Munk, Michelle M.
    Mehta, Manish
    Manginelli, Michael S.
    Nguyen, Chi
    Thomas, Orrin H.
    AIAA SCITECH 2021 FORUM, 2021,
  • [9] Simulation and analysis of architectures for a lunar surface outpost
    Findiesen, William
    Bayer, Martin
    Born, Andrew
    McCormick, David
    Bienhoff, Dallas
    SPACE TECHNOLOGY AND APPLICATIONS INTERNATIONAL FORUM STAIF 2008, 2008, 969 : 851 - +
  • [10] Lunar surface simulation - Opening the road to the moon
    Parkes, SM
    Martin, I
    PROCEEDINGS OF THE FOURTH INTERNATIONAL CONFERENCE ON EXPLORATION AND UTILISATION OF THE MOON, 2000, 462 : 221 - 224