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Mechanism-free control method of solar/thermal radiation pressure for application to attitude control

机译:用于姿态控制的太阳能/热辐射压力的无机理控制方法

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摘要

Solar radiation pressure (SRP) impinging on spacecraft is usually regarded as a disturbance for attitude motion, but it can be harnessed to solve the very problem it creates. Active SRP control is possible with solar radiation powered thin-film devices such as reflectivity control devices or liquid crystal devices with reflective microstructure. Thermal radiation pressure (TRP) can likewise be used to solve flight attitude problems caused by SRP, TRP, or other factors. TRP on solar cells can be controlled by switching regulators under the control of them, resulting in temperature change. These SRP/TRP controls are free from mechanisms, such as reaction wheels, and thus they do not produce internal disturbances. In addition, the magnitude of SRP/TRP torques is generally much smaller than internal disturbance torques produced by reaction wheels, which creates a potential for precision far beyond that achieved with mechanical controls. This paper summarizes how SRP/TRP can be used by means of numerical simulations of typical control methods. The usefulness of this mechanism-free attitude control is verified for future use on both Earth orbiting satellites and interplanetary spacecraft including solar sails.
机译:撞击宇宙飞船的太阳辐射压力(SRP)通常被认为是对姿态运动的干扰,但它可以利用它来解决它产生的问题。有源SRP控制可以利用诸如具有反射微观结构的反射率控制装置或液晶装置的太阳辐射动力薄​​膜装置。热辐射压力(TRP)同样可以用于解决SRP,TRP或其他因素引起的飞行姿态问题。可以通过在它们的控制下切换调节器来控制太阳能电池的TRP,导致温度变化。这些SRP / TRP控制无机制,例如反应轮,因此它们不会产生内部干扰。此外,SRP / TRP扭矩的大小通常比反应轮产生的内部干扰扭矩小得多,这产生了极大于机械控制所实现的精度的潜力。本文总结了SRP / TRP如何通过典型控制方法的数值模拟来使用。这种无机理姿态控制的有用性被验证,以便在包括太阳帆包括太阳风帆的地球轨道卫星和行星际航天器上的未来使用。

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