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A novel adaptive sun tracker for spacecraft solar panel based on hybrid unsymmetric composite laminates

机译:基于混合式非对称复合层压板的航天器太阳能电池板新型自适应太阳跟踪器

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This paper proposes a novel adaptive sun tracker which is constructed by hybrid unsymmetric composite laminates. The adaptive sun tracker could be applied on spacecraft solar panels to increase their energy efficiency through decreasing the inclined angle between the sunlight and the solar panel normal. The sun tracker possesses a large rotation freedom and its rotation angle depends on the laminate temperature, which is affected by the light condition in the orbit. Both analytical model and finite element model (FEM) are developed for the sun tracker to predict its rotation angle in different light conditions. In this work, the light condition of the geosynchronous orbit on winter solstice is considered in the numerical prediction of the temperatures of the hybrid laminates. The final inclined angle between the sunlight and the solar panel normal during a solar day is computed using the finite element model. Parametric study of the adaptive sun tracker is conducted to improve its capacity and effectiveness of sun tracking. The improved adaptive sun tracker is lightweight and has a state-of-theart design. In addition, the adaptive sun tracker does not consume any power of the solar panel, since it has no electrical driving devices. The proposed adaptive sun tracker provides a potential alternative to replace the traditional sophisticated electrical driving mechanisms for spacecraft solar panels.
机译:本文提出了一种新型自适应太阳跟踪器,由杂化非对称复合层压材料构成。自适应太阳跟踪器可以应用于航天器太阳能电池板,通过降低阳光和太阳能电池板之间的倾斜角度来提高其能效。太阳跟踪器具有大的旋转自由度,其旋转角度取决于层压体温度,这些温度受到轨道中的光状况的影响。为太阳跟踪器开发了分析模型和有限元模型(FEM),以预测其在不同光线条件下的旋转角度。在这项工作中,在混合层压板温度的数值预测中考虑了冬至冬至的地球同步轨道的光状况。使用有限元模型计算阳光和太阳能电池板之间的最终倾斜角度。对自适应太阳跟踪器进行参数研究,以提高太阳跟踪的能力和有效性。改进的自适应Sun跟踪器轻巧,具有较大的设计。此外,自适应Sun跟踪器不会消耗太阳能电池板的任何电源,因为它没有电驱动装置。所提出的自适应Sun跟踪器提供了一种潜在的替代方案,可以更换用于航天器太阳能电池板的传统复杂的电动驱动机制。

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