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Uninterrupted hand-over between ground stations for immersive telerobotics

机译:在接地站之间不间断地移交用于沉浸式托管托管

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Mars missions are complex and costly operations, which need not only be carefully planned, but rehearsed as completely as possible. This paper describes a work that aims enhancing the rehearsing of one specific mission, controlling a rover or a robot on surface of Mars from a manned orbiter. A METERON experiment and architecture is ESA's approach selected for carrying out this planning and practicing work. Current METERON architecture allows only a limited continuous time window for communications, restricted by the duration of the line-of-sight while ISS is passing a ground station. This paper discusses the effort to extend this typically 7 minute continuous time window to 20 minute continuous communications expected to be available during Mars orbiter's pass. The selected approach is performing handovers from one ground station to another as ISS progresses along its path, so that ISS will receive continuous stream of data from one ground station at the time without connection breaks. The work described in this paper explains the architectural choices, the implemented test-beds, and how the tests were carried out. While the study has demonstrated that the approach is feasible without costly changes to ISS, it also points out some necessary improvements to METERON that are needed in order to implement the handovers the way proposed in the solution.
机译:火星任务是复杂且昂贵的运营,不仅需要仔细计划,而且不需要尽可能完全排练。本文介绍了一项旨在加强对一个特定使命的排练,控制火星表面的排练的作品,从载人轨道采集。米隆的实验和架构是ESA的方法,用于执行此规划和练习工作。当前的Meteron架构只允许用于通信的有限连续时间窗口,限制在视线持续时间,而ISS通过地面站。本文讨论了将此典型的7分钟连续时间窗口扩展到20分钟的连续通信,预计在火星轨道轨道上可用。当沿其路径的进展时,所选方法从一个地面站从一个地面站执行到另一个地面,使得ISS将在没有连接断裂的时间内从一个地面站接收连续数据流。本文中描述的工作解释了建筑选择,所实施的测试床以及测试的开展方式。虽然该研究表明该方法是可行的没有对ISS的成本变化而无需昂贵的变化,但它还指出了需要对解决方案中提出的方法所需的霉菌所需的必要改进。

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