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首页> 外文期刊>International Journal of Mechanical Sciences >Design optimization of mesh antennas for on-orbit thermal effects
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Design optimization of mesh antennas for on-orbit thermal effects

机译:用于轨道热效应的网状天线的设计优化

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Cable network antennas are widely used in space missions, and high requirements on the reflector surface accuracy should be met to achieve reasonable electromagnetic performance. As the form of the cable network is dependent on forces and vice versa, the optimization design for the antenna's cable forces is extremely important. The current optimization methods are usually conducted under ambient temperature, ignoring the shape errors caused by the on-orbit thermal effects in space. Besides, the application of the active shape adjustment method is also limited by the on-orbit measurement and on-orbit control techniques at present. To reduce the on-orbit thermal disturbances and relieve the burden of shape pre-adjustment before launch, we proposed an optimization design method focusing on the on-orbit performances. The antenna's uneven temperature filed at typical orbital positions was calculated based on the heat radiation and conduction theories. The thermal-structural model considering the cable network's and the truss's thermal deformation and elastic deformation was established. For the optimization, the cable force densities were chosen to be the optimization variables, the antenna's shape errors at typical orbital positions were taken as the objectives, and the tension distributions at these orbital positions were considered as the constraint conditions. Numerical examples demonstrated that the proposed method improved the antenna's on-orbit surface accuracy effectively. This work provided ideas and solutions for the cable network's optimization design considering the on-orbit performances in the space environment.
机译:电缆网络天线广泛应用于太空任务,应满足高要求反射器表面精度,以实现合理的电磁性能。由于电缆网络的形式取决于力,反之亦然,天线电缆力的优化设计非常重要。目前的优化方法通常在环境温度下进行,忽略由空间内轨道热效应引起的形状误差。此外,主动形状调节方法的应用也受到目前在轨道测量和轨道控制技术的限制。为了减少轨道的热扰动并减轻发射前的形状预调整,我们提出了一种专注于轨道性能的优化设计方法。基于热辐射和传导理论来计算在典型的轨道位置处提出的天线的不平坦温度。建立了考虑电缆网络和桁架热变形和弹性变形的热结构模型。为了优化,选择电缆力密度作为优化变量,将天线在典型的轨道位置处的形状误差作为目的,并且这些轨道位置处的张力分布被认为是约束条件。数值示例证明了所提出的方法有效地改善了天线的轨道表面精度。考虑到空间环境中的轨道性能,这项工作提供了有线网络的优化设计的想法和解决方案。

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