根据标准层次结构优化大型可转换反射器辐条的部署

S. A. Kabanov, D. S. Kabanov
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引用次数: 0

摘要

本文讨论了考虑弯曲振动的大型空间反射镜轮辐角运动的控制过程。目前,大型天线被积极用于接收和发送数据。当将大型结构发射到太空中时,会出现辐条可靠部署的问题,因为它们被封装在小体积中,以便能够安装在运载火箭中。由于可能出现各种异常情况,如元件干扰、网络啮合,因此有必要重新部署天线。因此,开发能够可靠地解决直接运动和反向运动问题的控制算法是很重要的。在部署和组合反射器元件的过程中,结构中会出现各种变形。当天线辐条聚集在一起时,横向振荡对瞬态过程的振荡贡献最大。目前,弹性变形元件被用于部署大型反射器,并且还使用控制程序。这样可以防止在展开条件发生变化时调整控制装置。本文研究了通过实时使用最优控制算法来最小化结构在部署过程中的振动的可能性。天线元件的正向和反向运动是通过两个标准层次优化来执行的。给出了反射辐条最佳旋转的数值模拟结果。所提出的算法允许您在紧急情况下为各种类型的大型反射器选择最佳控制。
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Optimal deployment of the spoke of a largesized transformable reflector according to the hierarchy of criteria
The article discusses the process of controlling the angular motion of the spoke of a large-sized space-based reflector, taking into account bending vibrations. Currently, large antennas are actively used for receiving and transmitting data. When launching large structures into space, the problem arises of reliably deployment the spokes, since they are packed in a small volume to be able to be installed in a launch vehicle. Due to the possibility of various abnormal situations, such as jamming of elements, engagement of the net, it is necessary to re-deployment the antenna. Therefore, it is important to develop control algorithms that can reliably solve the problems of direct and reverse motion. In the process of deployment and bringing together the elements of the reflector, various deformations appear in the structure. When the antenna spokes are brought together, lateral oscillations make the largest contribution to the oscillatory of the transient process. Currently, elastically deformed elements are used to deployment large-sized reflectors, and a control program is also used. This prevents the control from being adjusted when the deployment conditions change. The paper investigates the possibility of minimizing the vibrations of a structure during its deployment by using optimal control algorithms in real time. The forward and reverse motion of the antenna elements is performed by means of a two-criteria hierarchy optimization. The results of numerical simulation of the optimal rotation of the reflector spoke are presented. The proposed algorithm allows you to choose the optimal control in emergency situations for various types of large reflectors.
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发文量
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审稿时长
8 weeks
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