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ON-ORBIT SHAPE CORRECTION OF INFLATABLE STRUCTURES

机译:可充气结构的轨道形状校正

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Piezo induced deformations are proposed as a means of achieving a higher degree of on-orbit surface accuracy of inflatable antennas. A series of tests were performed on an inflated circular membrane and an inflated tube, both made of off-the-shelf piezo film. The same configurations were also analyzed to validate the tests. The concept was demonstrated qualitatively in spite of a discrepancy between the analysis and test results, most likely due to inaccurate knowledge of the piezoelectric coefficients of the film. Numerical simulations are also reported herein, which demonstrate the piezocontrol of an antenna design concept. A parametric study is carried out to determine the most effective distribution of actuators and their optimal gains required to correct given aberrations in the surface of the antenna. The proposed approach is generally suitable for making small local adjustments in the shape of the antenna.
机译:提出了压电诱导的变形作为实现可充气天线的更高程度的轨道表面精度的方法。在充气的圆形膜和膨胀管上进行一系列测试,两者都由搁板的压电膜制成。还分析了相同的配置以验证测试。尽管分析和测试结果之间存在差异,但最有可能因薄膜的压电系数的不准确知识而差异。本文还报告了数值模拟,其展示了天线设计概念的压电机。进行参数研究以确定致动器的最有效分布及其所需的最佳增益,以便在天线表面校正给定的畸变。所提出的方法通常适用于在天线的形状中进行小的局部调整。

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