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Braking control law for a barbell Electric Sail

机译:杠铃电动帆的制动控制律

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摘要

The Electric Sail is investigated here with a focus on tether deployment. The Electric Sail is envisioned to deploy multiple greater than 1 km tethers connected to a central confluence point. The barbell Electric Sail which contains two satellites and two tethers connected to a central confluence point is investigated here. The deployment process is complex and has a high likelihood of creating unnecessary vibrations. In order to deploy the satellites, kinetic energy must be introduced into the system to separate the satellites. This kinetic energy must be removed without creating significant axial vibrations or the remainder of the mission will be compromised. Creating axial vibrations will impart a significant amount of fatigue on the system or could cause the entire system to collapse on itself. A braking mechanism is envisioned to be used to remove the kinetic energy via friction. The force vs time curve of the brake is the focus of this paper by investigating different braking control laws for the barbell Electric Sail. It is shown through simulation that using a Gaussian distribution for the braking force results in the lowest residual energy in the system. This is shown by using a previously derived multibody nonlinear simulation tool coupled to a visco elastic tether bead model.
机译:这里对Electric Sail进行了研究,重点是系绳的部署。预计“电动帆”将部署多个连接到中央汇合点的大于1公里的系绳。这里研究了杠铃电动帆,它包含两个卫星和两个系绳,它们连接到一个中央汇合点。部署过程很复杂,极有可能产生不必要的振动。为了部署卫星,必须将动能引入系统中以分离卫星。必须去除该动能而不会产生明显的轴向振动,否则将影响其余任务。产生轴向振动会给系统带来大量疲劳,或者可能导致整个系统自身崩溃。可以设想使用制动机构通过摩擦来去除动能。通过研究杠铃电动帆的不同制动控制规律,制动器的力与时间曲线成为本文的重点。通过仿真显示,对制动力使用高斯分布会导致系统中的最低残留能量。这是通过使用先前导出的多体非线性仿真工具与粘弹性束缚珠模型耦合来显示的。

著录项

  • 来源
    《Acta astronautica》 |2019年第7期|1-6|共6页
  • 作者单位

    Univ S Alabama, 150 Jaguar Dr,Shelby Hall 3106, Mobile, AL 36688 USA|Mech Engn, 150 Jaguar Dr, Mobile, AL 36688 USA;

    Univ S Alabama, 150 Jaguar Dr,Shelby Hall 3106, Mobile, AL 36688 USA|Mech Engn, 150 Jaguar Dr, Mobile, AL 36688 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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