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Conducting efficient remote science and planning operations for ocean exploration using Exploration Ground Data Systems (xGDS)

机译:使用勘探地面数据系统(xGDS)对海洋勘探进行有效的远程科学和规划操作

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NASA Ames' Exploration Ground Data Systems (xGDS) supports rapid scientific decision making by synchronizing information in time and space, including video and still images, scientific instrument data, and science and operations notes in geographic and temporal context. We have deployed xGDS at multiple NASA field analog missions over the past decade. In the last two years, we have participated in SUBSEA, a multi-institution collaborative project*. SUBSEA used the research ship E/V Nautilus along with its two remotely operated vehicles (ROVs), Hercules and Argus, to explore deep ocean volcanic vents as an analog for ocean worlds (e.g. Enceladus). This work allowed us to compare the existing oceanographic operations methods and technologies used for ocean exploration with corresponding tools and approaches developed and used at NASA. In the first year of SUBSEA we observed existing remote science operations from the Inner Space Center (ISC)**. In the second year, we deployed xGDS at ISC to complement existing capabilities with xGDS tools designed to support remote Nautilus science operations from the ISC. During operations, video, ROV position and instrument telemetry were streamed from the ship to the ISC. As the science team watched dive operations, they could annotate the data with observations that were relevant to their work domain. Later, the team members could review the data at their own pace to collaboratively develop a dive plan for the next day, which had to be delivered on a fixed daily schedule. The opportunity to compare operations under different conditions enabled us to make several key observations about conducting remote science and planning operations efficiently: (i) Reviewing data collaboratively and interactively with temporal and spatial context was critical for the remote science team's ability to plan dive operations on the Nautilus. (ii) Science team members were actively engaged with the remote dive operations because they could interact with the collected data and visualize it as they desired. (iii) Being able to replay past events at accelerated speeds, and jump to points in time and spaced based on search results, provided efficient access to critical points of interest in a massive volume of data, so the remote science team could deliver plans on time. * SUBSEA (Systematic Underwater Biogeochemical Science and Exploration Analog) is a multi-institution collaboration supported by NASA, NOAA's Office of Exploration Research (OER), the Ocean Exploration Trust (OET) and the University of Rhode Island's Graduate School of Oceanography (GSO). ** ISC is GSO's telepresence operations facility.
机译:NASA Ames的勘探地面数据系统(xGDS)通过在时间和空间上同步信息来支持快速的科学决策,这些信息包括视频和静态图像,科学仪器数据以及地理和时间上下文中的科学和操作说明。在过去的十年中,我们已经在多个NASA外地模拟任务中部署了xGDS。在过去的两年中,我们参加了SUBSEA,这是一个多机构合作项目*。 SUBSEA使用研究船E / V Nautilus以及其两个远程驾驶车辆(ROV)大力神(Hercules)和阿格斯(Argus)来探索深海火山喷口,作为海洋世界(例如土卫二(Enceladus))的类似物。这项工作使我们能够将用于海洋勘探的现有海洋学操作方法和技术与美国宇航局开发和使用的相应工具和方法进行比较。在SUBSEA的第一年,我们观察到了来自内部太空中心(ISC)**的现有远程科学操作。在第二年,我们在ISC部署了xGDS,以通过旨在支持ISC进行远程Nautilus科学操作的xGDS工具来补充现有功能。在操作过程中,视频,ROV位置和仪表遥测从船上流向了ISC。当科学团队观察潜水操作时,他们可以使用与其工作领域相关的观察结果对数据进行注释。后来,团队成员可以按照自己的进度查看数据,以合作制定第二天的潜水计划,该计划必须按固定的时间表进行。比较不同条件下的操作的机会使我们能够就进行远程科学和有效计划操作进行一些关键观察:(i)在时空背景下协作和交互地查看数据对于远程科学团队计划潜水计划至关重要。鹦鹉螺。 (ii)科学团队成员积极参与远程潜水操作,因为他们可以与收集的数据进行交互并根据需要对其进行可视化。 (iii)能够以更快的速度重播过去的事件,并可以根据搜索结果跳到时间点和间隔,可以高效地访问海量数据中的关键兴趣点,因此远程科学团队可以在以下方面提供计划时间。 * SUBSEA(系统的水下生物地球化学科学与探索模拟)是由NASA,NOAA的探索研究办公室(OER),海洋探索基金会(OET)和罗德岛大学海洋学研究生院(GSO)支持的多机构合作。 。 ** ISC是GSO的网真运营设施。

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