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Experiments and numerical simulations of an electrodynamic tether deployment from a spool-type reel using thrusters

机译:使用推进器从线轴型线轴展开电动系绳的实验和数值模拟

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The amount of space debris is ever increasing, and pollution of the space environment has become a serious problem that can no longer be ignored. Consequently, the active removal of large space debris from crowded economically useful orbits should begin as soon as possible. The Japan Aerospace Exploration Agency has been investigating an active debris removal system that employs highly efficient electrodynamic tether (EDT) technology for orbital transfer. This study investigates the tether deployment from a spool-type reel using thrusters by means of numerical simulations of an EDT system. The thrusters are used in order to ensure the deployment of a tether with the length of several kilometers. In the simulations using a multiple mass tether model, the key parameters are estimated from various on-ground experiments. By means of the numerical simulations, the dynamics of tether deployment is studied and requirements of thruster needed for the deployment, such as the thrust forces and the periods of thruster activation, are clarified.
机译:空间碎片的数量不断增加,空间环境的污染已成为一个严重的问题,不再可以忽略。因此,应尽快开始从拥挤的经济有用轨道上主动清除大空间碎片。日本航天探索局一直在研究一种主动碎片清除系统,该系统采用高效的电动系链(EDT)技术进行轨道转移。这项研究通过EDT系统的数值模拟研究了使用推进器从线轴型线轴上的系绳展开。使用推进器是为了确保展开数千米长的系绳。在使用多质量系链模型的仿真中,关键参数是通过各种地面实验估算出来的。通过数值模拟,研究了系绳展开的动力学,并阐明了展开所需的推进器要求,例如推力和推进器启动周期。

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