Optimization of multi-state generation problem based on spatial information network topology

IF 3.2 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS High-Confidence Computing Pub Date : 2023-03-01 DOI:10.1016/j.hcc.2022.100102
Peng Yang , JiaYing Zhang , Shijie Zhou , Jinyu Zhou
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引用次数: 1

Abstract

Spatial information network is a kind of satellite network with high speed node movement and fast dynamic topology change. With the increasing number of low-orbit satellites, the research on the subnets topology and dynamic optimization of space information networks has become an important direction to study the destructibility of spatial information network. In this paper, two common objective functions in inter-satellite link assignment, network observation position and network communication factor are studied, and a multi-objective optimization model is constructed. Depth first search, simulated annealing, NSGA-II and adaptive optimization simulated annealing were used to analyze and solve the model. By comparing the solving efficiency of the model through simulation experiments, the difference of the results caused by the four algorithms is verified.

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基于空间信息网络拓扑结构的多状态生成优化问题
空间信息网络是一种节点移动速度快、拓扑结构动态变化快的卫星网络。随着低轨卫星数量的不断增加,空间信息网络子网拓扑结构和动态优化研究已成为研究空间信息网络破坏性的重要方向。本文研究了星间链路分配中两个常见的目标函数,即网络观测位置和网络通信因子,并建立了多目标优化模型。采用深度优先搜索、模拟退火、NSGA-II和自适应优化模拟退火对模型进行了分析和求解。通过仿真实验对模型的求解效率进行比较,验证了四种算法求解结果的差异。
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