卫星有效载荷布置的一种ilp辅助两级布局优化方法

Xiaoqian Chen, Xianqi Chen, Yufeng Xia, Weien Zhou, Wen Yao
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引用次数: 1

摘要

在卫星总体设计阶段,为保证电子元器件的聚合在合适的温度环境下正常稳定运行,进行卫星布局设计是至关重要的一步。为解决东方红4号平台卫星载荷布置问题,提出了热管约束组件布局优化问题,并建立了热管约束组件布局优化模型。经过仔细研究,可以将其划分为两个优化子问题,然后再进行求解。基于分治策略,提出了一种整数线性规划辅助的两阶段布局优化方法。第一阶段,利用ILP技术对部件热管分布进行优化,确定各部件占用的具体热管,减小部件的水平运动范围。第二阶段对零件布局进行详细优化,得到零件的最终位置。首先,采用序列布局采样(SeqLS)方法生成一个无重叠的初始布局;其次,加入组件之间的交换操作,以减少质心偏差。最后,根据生成的有希望的初始布局解进行序列二次规划(SQP)搜索。因此,在第二阶段提出了基于seql的启发式布局搜索算法。通过分别包含15个组件和90个组件的布局测试用例,验证了所提出的布局设计方法的有效性。实验结果表明,这种两阶段方法在工程上应用于卫星有效载荷放置是有前景的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An ILP-Assisted Two-Stage Layout Optimization Method for Satellite Payload Placement
In the satellite overall design phase, it is a crucial step to perform satellite layout design to guarantee that the aggregation of electronic components can operate normally and stably in an appropriate temperature environment. In order to handle the satellite payload placement problem of the DongFangHong 4 (DFH-4) platform, the heat pipe-constrained component layout optimization (HCLO) problem is proposed with the HCLO model formulated. Through careful investigation, it can be divided into two optimization subproblems that can be solved subsequently. Based on the divide-and-conquer strategy, an integer linear programming- (ILP-) assisted two-stage layout optimization method is proposed. In stage one, component-heat pipe distribution optimization is performed using the ILP technique so that specific heat pipes occupied by each component can be determined and the horizontal movement range of components can be reduced. In stage two, the detailed component layout optimization is investigated to obtain the final positions of components. First, the sequence layout sampling (SeqLS) method is used to generate one nonoverlap initial layout. Next, swap operation between components is incorporated to reduce the centroid deviation. Finally, sequential quadratic programming (SQP) search is conducted based on the generated promising initial layout solutions. Therefore, the SeqLS-based heuristic layout search algorithm is proposed in the second stage. Two layout test cases, including 15 components and 90 components, respectively, are investigated to demonstrate the validity and efficacy of the proposed layout design method. Experimental results show that it is promising to apply such a two-stage approach for satellite payload placement in engineering.
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