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Abstract

The assembly optimization design of satellite components is a crucial element in the overall design of satellites. In this paper, a novel three-dimensional assembly optimization design problem (3D-AODP) for multi-module micro–nano satellite components is proposed according to the engineering requirements, aiming at optimizing the satellite mass characteristics, and taking into account constraints such as space interference, space occupation and special location. Multi-module micro–nano satellites are a new type of satellite configuration based on the assembly of multiple U-shaped cube units. The 3D-AODP of its components is a challenging two-layer composite optimization task involving discrete variable optimization of component allocation and continuous variable optimization of component layout, which interact with each other. To solve the problem, a hybrid assembly optimization method based on tabu search (TS) and multi-objective differential evolutionary (MODE) algorithms is proposed, in which the assignment problem of the components is converted into a domain search problem by the TS algorithm. The space interference constraints and space occupancy constraints of the components are considered, and an assignment scheme with the minimum mass difference is obtained. On this basis, a bi-objective differential evolutionary algorithm is used to develop the layout optimization problem for the components, which takes into account the spatial non-interference constraints and special location constraints of the components, and obtains the Pareto solution set of the assembly scheme under the optimal mass characteristics (moment of inertia and product of inertia). Finally, the feasibility and effectiveness of the proposed method is demonstrated by an engineering case.

Details

1009240
Title
Multi-Objective Optimization Method for Multi-Module Micro–Nano Satellite Components Assignment and Layout
Author
Zhang, Hao 1 ; Zhou, Jun 1 ; Liu, Guanghui 1 

 Institute of Precision Guidance and Control, Northwestern Polytechnical University, Xi’an 710072, China; [email protected] (J.Z.); [email protected] (G.L.), National Engineering Laboratory for Integrated Aero-Space-Ground-Ocean Big Data Application Technology, 1 Dongxiang Road, Chang’an District, Xi’an 710072, China 
Publication title
Aerospace; Basel
Volume
12
Issue
7
First page
614
Number of pages
23
Publication year
2025
Publication date
2025
Publisher
MDPI AG
Place of publication
Basel
Country of publication
Switzerland
Publication subject
e-ISSN
22264310
Source type
Scholarly Journal
Language of publication
English
Document type
Journal Article
Publication history
 
 
Online publication date
2025-07-08
Milestone dates
2025-05-16 (Received); 2025-07-04 (Accepted)
Publication history
 
 
   First posting date
08 Jul 2025
ProQuest document ID
3233032121
Document URL
https://www.proquest.com/scholarly-journals/multi-objective-optimization-method-module-micro/docview/3233032121/se-2?accountid=208611
Copyright
© 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.
Last updated
2025-07-25
Database
ProQuest One Academic