arrow
返回

Parametric design optimization approach to petal-type solid surface deployable reflectors

delete2022-08-01
delete8
PRE
AI
G
Guodong Tan
X
Xuechao Duan *
D
Dongwu Yang
J
Jun Ma
张
张丹 (Dan Zhang)
DOI:10.1016/j.actaastro.2022.02.032delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
A parametric design approach to the petal-type solid surface deployable reflector is presented, in which the generic parametric model of the reflector is established and its division parameters are optimized to simplify the structure, increase deployment reliability and improve electrical performance. For this goal, the estimated expression of the division number of petals is first derived as the initial value of subsequent optimization algorithm. Then the estimation-trial algorithm is developed, its corresponding three-level nested optimization model is established, and the reference circle model for improving the efficiency in solving the aforementioned model is proposed. Furthermore, the deployment scheme of this kind of reflectors is implemented by Euler???s rotation theorem combined with rigid-body registration. In addition, the parameter analysis is made to determine which parameters dominate the division number of petals. Finally, the effectiveness of this method in configuration, deployment and optimality together with the improvement in deployment reliability and electrical performance are verified. It is revealed that reflectors designed with this method need fewer petals compared with the existing reflectors of this class, deploy smoothly, have lower deployment failure probability, as well as have higher antenna gains and lower relative sidelobe levels. The results indicate the petal-type solid surface deployable reflector characterized by compact structure, high reliability and good electrical performance can be obtained with the approach proposed in this paper.
Keyword:
Petal-type solid surface deployable reflector
Parametric model
Estimation-trial algorithm
Reference circle model
Euler?s rotation theorem
Rigid-body registration

期刊

Acta Astronautica 封面图
Acta Astronautica
IF:
3.4
论文数:
1.2W
被引数:
2.1W

机构

Y
york university - canada
学者数:
8.3K
论文数: 9.0K
被引数: 10
X
Xidian University
学者数:
2.4W
论文数: 1.9W
被引数: 9.7K
引用论文

引用论文

err分享
err收藏
A new concept for solid surface deployable antennas
err1996-01-01
err131
PREAI
errGuest, SD; Pellegrino, S
err分享
err收藏
Caseous calcification of the mitral annulus二尖瓣环的干酪样钙化
err2005-06-01
err0
errOAAI
errHatem Alkadhi; Sebastian Leschka; René Prêtre; Aurel Perren; Borut Marincek; Simon Wildermuth
err分享
err收藏
Age and fertility
err2003-11-01
err0
PREAI
errRajeevi Madankumar; Matthew A Cohen; Steven H Brenner
err分享
err收藏
学者 查看更多内容