「運動と振動の制御」シンポジウム講演論文集
Online ISSN : 2424-3000
セッションID: A11
会議情報
A11 惑星探査ローバーの軟弱斜面横断シミュレータの開発(M-OS13-3:探査ローバの走行力学解析I,M-OS13 宇宙機・宇宙ロボットのダイナミクスと制御,「海を越え,国を越え,世代を超えて!」)
榎本 裕次郎猪爪 宏彰須藤 真琢永谷 圭司吉田 和哉
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会議録・要旨集 フリー

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抄録
Planetary rovers that explore surface of the Moon or Mars easily slip in both longitudinal and lateral directions because it is covered with fine-grained sand. Particularly, when rovers traverse lateral slopes, the side slip occurs significantly. In the worst case, the rovers may deviate significantly on the slopes, and there is a possibility that fails to planetary exploration. To mitigate the slippage problems, we have confirmed in our previous research that the side slip of a rover is able to be reduced by changing the attitude of the rover. In order to study further the traversal behavior of a rover, in this research, we developed a dynamics simulator that includes a wheel-soil interaction model based on terramechanics on slope. To validate the simulator, we conducted numerical simulations for slope-traversing scenarios and compared the results with those of experiments. According to the comparison, the simulation results qualitatively match the tendencies of experimental results in the most cases and thus verify the usefulness of the simulator.
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© 2013 一般社団法人 日本機械学会
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