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method and device for compensation of solar tides gradients of a satellite during a solar eclipse

机译:日食期间补偿卫星太阳潮梯度的方法和装置

摘要

A system compensating for solar pressure disturbance on an orbiting satellite comprises sensor means (34) for measuring the satellites attitude ( theta ) relative to a predetermined satellite axis and providing an attitude measurement signal ( theta m) in the predetermined axis. Further provided are control means (36) for receiving the attitude measurement signal ( theta m) and calculating satellite attitude compensation control signals (Tc) in the predetermined axis. An eclipse transient compensation device (40) provides an eclipse signal to the control means (36) indicating the satellite is being eclipsed from the sun. Said control means (36) removes signals (Ti) being applied to the actuation means (38) from the control means (36) for compensating solar pressure on the satellite. Further are provided actuation means (38) for actuating the satellite in a predetermined axis in response to the compensation control signals (Tc) from the control means (36) (Fig. 2). Further is disclosed a respective method of maintaining a orbiting satellite in a predetermined satellite attitude against the disturbance of solar pressure on the satellite. IMAGE
机译:补偿轨道卫星上的太阳压力干扰的系统包括传感器装置(34),该传感器装置用于测量卫星相对于预定卫星轴的姿态(theta)并在预定轴上提供姿态测量信号(theta )。还设置有控制装置(36),用于接收姿态测量信号(θ)并计算预定轴上的卫星姿态补偿控制信号(Tc)。月食瞬态补偿装置(40)向控制装置(36)提供月食信号,指示卫星正被太阳遮挡。所述控制装置(36)从控制装置(36)去除施加到致动装置(38)的信号(Ti),以补偿卫星上的太阳压力。还提供了致动装置(38),用于响应于来自控制装置(36)的补偿控制信号(Tc)沿预定轴致动卫星(图2)。还公开了一种将轨道卫星保持在预定的卫星姿态以抵抗卫星上的太阳压力干扰的相应方法。 <图像>

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