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Passive Sensor Evaluation for Unmanned Ground Vehicle Mud Detection

机译:用于无人地面车辆泥浆检测的被动传感器评估

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摘要

Detecting mud hazards is a significant challenge to unmanned ground vehicle (UGV) autonomous off-road navigation. A military UGV stuck in a body of mud during a mission may need to be sacrificed or rescued, both unattractive options. The Jet Propulsion Laboratory is currently developing a daytime mud detection capability under the U.S. Army Research Laboratory Robotics Collaborative Technology Alliances program using UGV-mounted sensors. To perform robust mud detection under all conditions, we expect that multiple sensors will be necessary. A passive mud detection solution is desirable to meet future combat system requirements. To characterize the advantages and disadvantages of candidate passive sensors, outdoor data collections have been performed on wet and dry soil using visible, multispectral (including near-infrared), shortwave infrared, mid wave infrared, long-wave infrared, polarization, and stereo sensors. In this paper, we examine the cues for mud detection that each of these sensors provide, along with their deficiencies, and we illustrate localizing detected mud in a world model that can used by a UGV to plan safe paths. We mostly limit our examination to mud detection during the daytime under ideal conditions: isolated wet soil surrounded by dry soil during nominal weather, i.e., no precipitation, calm wind, and near-average temperatures.
机译:对于无人地面车辆(UGV)自主越野导航而言,检测泥浆灾害是一项重大挑战。在执行任务期间,卡在泥体内的军用UGV可能需要牺牲或营救,这两种选择都没有吸引力。喷气推进实验室目前正在根据美国陆军研究实验室机器人协作技术联盟计划开发的日间泥浆探测能力,该计划使用安装了UGV的传感器。为了在所有条件下进行可靠的泥浆检测,我们预计将需要多个传感器。需要一种被动的泥浆探测解决方案来满足未来的战斗系统要求。为了表征候选无源传感器的优缺点,已使用可见,多光谱(包括近红外),短波红外,中波红外,长波红外,偏振和立体声传感器在潮湿和干燥的土壤上进行了室外数据收集。在本文中,我们检查了每个传感器提供的泥浆检测线索以及它们的不足之处,并说明了在世界模型中对检测到的泥浆进行定位的过程,该模型可以被UGV用于规划安全路径。我们主要将检查限于白天在理想条件下的泥浆检测:在正常天气下,即孤立的潮湿土壤被干燥土壤包围,即没有降水,风平和接近平均温度。

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  • 来源
    《Journal of robotic systems》 |2010年第4期|P.473-490|共18页
  • 作者

    A. L. Rankin; L. H. Matthies;

  • 作者单位

    Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, Pasadena, California 91109;

    rnJet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, Pasadena, California 91109;

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