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Determination of the optimal beta gimbal angles for the solar arrays of the space station using a neural network

机译:使用神经网络确定空间站太阳阵列的最佳β万向节

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The current baseline solution for minimizing the potential of dynamic loads being imparted onto the solar arrays of the Space Station during proximity maneuvers by the Space Shuttle is to lock the position of the solar arrays throughout the approach/departure of the Space Shuttle. However, if the a priori locked position does not optimally feather the solar arrays throughout the Shuttle's approach/departure, excessive dynamic loads could result, producing a structural failure in the solar arrays. A more robust solution would involve feathering the position of the solar arrays throughout proximity maneuvers by the Space Shuttle. The robust solution will be implemented using a neural network as an open loop predictor/controller.
机译:用于最小化动态载荷的电位施加到空间班车的近距离操纵期间施加到空间站的太阳阵列的电流基线解决方案是在航天飞机的方法/离开过程中锁定太阳阵列的位置。但是,如果先验锁定位置在整个班车的方法/出发过程中没有最佳地羽毛太阳阵列,则可能导致过度的动态载荷,在太阳阵列中产生结构性故障。更强大的解决方案将涉及在航天飞机周围在邻近的机动过程中悬挂太阳阵列的位置。将使用神经网络作为开环预测器/控制器实现鲁棒解决方案。

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