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Demonstrating a new technology for space debris removal using a bi-directional plasma thruster

机译:演示使用双向等离子推进器清除空间碎片的新技术

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摘要

Space debris removal from Earth orbit by using a satellite is an emergent technological challenge for sustainable human activities in space. In order to de-orbit debris it is necessary to impart a force to decelerate it, resulting in its atmospheric re-entry. A satellite using an energetic plasma beam directed at the debris will need to eject plasma in the opposite direction in a controlled manner in order to maintain a constant distance between it and the debris during the deorbiting mission. By employing a magnetic nozzle plasma thruster having two open source exits, bi-directional plasma ejection can be achieved using a single electric propulsion device. Both the forces exerted on the thruster and the target plate simulating the debris are simultaneously measured in a laboratory space simulation chamber showing that a force decelerating the debris and a zero net force on the thruster can be successfully obtained. These two forces can be individually controlled by external electrical parameters, resulting in the ability to switch the acceleration and deceleration modes of the satellite and the debris removal mode using a single electric propulsion device.
机译:使用卫星从地球轨道清除空间碎片是对人类在太空中可持续活动的新兴技术挑战。为了使碎片绕轨道运动,必须施加力使其减速,从而使其重新进入大气层。使用定向在碎片上的高能等离子体束的卫星将需要以受控的方式沿相反方向喷射等离子体,以便在轨道飞行任务期间维持其与碎片之间的恒定距离。通过使用具有两个开源出口的磁性喷嘴等离子推进器,可以使用单个电推进装置实现双向等离子喷射。在实验室空间模拟室中同时测量了施加在推进器上的力和模拟碎片的目标板,这表明可以成功获得使碎片减速的力和在推进器上的零净力。这两个力可以通过外部电气参数单独控制,从而能够使用单个电动推进装置来切换卫星的加速和减速模式以及碎片清除模式。

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