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Adapting AUVs for Use in Under-Ice Scientific Missions

机译:适用于ICE底层科学任务的AUV

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Since the mid 1960's, Canadian companies and universities have been leaders in the development of unmanned underwater vehicles and sensing systems. Over the same period, there has been increasing interest in the use of the Arctic, both as an ocean waterway and as a source of natural resources and food. In support of these objectives, scientific studies and research to characterize the Arctic environment are being initiated with increasing frequency. With an Arctic landmass second only in area to that of Russia, Canada has a major interest in the focus and impact of these studies, and it has started to use unmanned vehicles as a platform to aid in the collection of polar ocean data. The paper will review the experience gained on Arctic operations and outline the considerations and decisions that were made to adapt AUV technology and procedures for the Arctic mission. Both pre-deployment and operational aspects will be covered. Pre-deployment aspects that will be presented include training, fail safe provisions, mission planning and simulation, the use of local knowledge or lore, mission logistics and finally, loss provisions and insurance coverage for the vehicle. Operational aspects to be discussed will include dealing with extremely cold, ice-surface temperatures, high latitude, inertial initialization and navigation, under-ice acoustic positioning, communications with the AUV, acoustic homing to the recovery site and the procedures for recovery. Procedures for turning the vehicle around between missions, including options for battery charging, data down and mission upload, will also be presented. The paper will demonstrate that the technology and procedures needed to operate AUVs successfully in polar regions have been demonstrated to work and are readily available to the scientific researcher. The paper will also highlight the need for a thorough AUV training program ahead of the polar deployment.
机译:自1960年代中期以来,加拿大公司和大学是在无人水下车辆和传感系统的发展中的领导者。在同一时期,对北极的使用越来越兴趣,无论是海洋水路还是作为自然资源和食物的源泉。为了支持这些目标,科学研究和研究表征北极环境的频率越来越多。随着北极地中的仅限于俄罗斯的地区,加拿大对这些研究的重点和影响产生了重大兴趣,并且已经开始使用无人驾驶车辆作为辅助极地海洋数据的平台。本文将审查获得北极行动的经验和大纲作了适应AUV技术和程序北极使命的考虑和决定。这两种预部署和运营方面将被覆盖。将呈现前部署方面包括培训,故障安全规定,任务规划和仿真,利用当地的知识和学问,特派团后勤最后,损失准备金以及保险车辆。要讨论业务方面将包括应对极端寒冷,冰面温度,纬度高,惯性初始化和导航,冰下声学定位,与AUV通信,声自导到恢复站点和恢复的过程。为扭转任务的车辆,包括电池充电的选项,数据下降和使命上传程序,也将呈现。本文将证明,在极地地区成功运营水下机器人所需要的技术和程序,已被证明的工作,并随时提供给科研人员。本文还将突出对极地部署的全面AUV训练计划未来的需要。

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  • 来源
    《OCEANS》|2008年||共5页
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  • 作者

    James Ferguson;

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  • 原文格式 PDF
  • 正文语种
  • 中图分类 P75-53;
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