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Analysis of bare-tether systems for deorbiting low-earth-orbit satellites

机译:用于低地球轨道卫星离轨的裸系绳系统分析

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摘要

Performances, design criteria, and system mass of bare tethers for satellite deorbiting missions are analyzed. Orbital conditions and tether cross section define a tether length, such that 1) shorter tethers are electron collecting practically in their whole extension and 2) longer tethers collect practically the short-circuit current in a fixed segment length. Long tethers have a higher drag efficiency I defined as the drag force vs the tether mass') and are better adapted to adverse plasma densities. Dragging efficiency and mission-related costs are used to define design criteria for tether geometry. A comparative analysis with electric thrusters shows that bare tethers have much lower costs for low- and midinclination orbits and remain an attractive option up to 70 deg. References: 21
机译:分析了卫星离轨任务裸系绳的性能、设计标准和系统质量。轨道条件和系绳横截面定义了系绳长度,因此 1) 较短的系绳实际上在其整个延伸中收集电子,2) 较长的系绳实际上在固定段长度内收集短路电流。长系绳具有更高的阻力效率,我将其定义为阻力与系绳质量'),并且更好地适应不利的等离子体密度。拖曳效率和与任务相关的成本用于定义系绳几何形状的设计标准。与电动推进器的比较分析表明,裸系绳在低倾角和中倾角轨道上的成本要低得多,并且在高达70度的轨道上仍然是一个有吸引力的选择。

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