Cost-aware service function chain migration in satellite-ground integrated networks

Zhiyu Fu, Jing Ran, Hefei Hu
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Abstract

The integration of satellite and ground networks (SGIN) represents a significant advancement in the evolution of 6G mobile technologies. The rapid movement of satellites leads to swift changes in network topology. By adjusting the Service Function Chain (SFC) to these frequent changes, it's possible to diminish SFC delay and enhance the user experience. This study addresses the challenge of SFC migration within the dynamic SGIN framework. We initially developed a mathematical formulation for the VNF migration and SFC reconfiguration task, with the objective of optimizing the total system benefits. An enhanced genetic algorithm was introduced as a solution, striking an optimal compromise between SFC delay and the expenses associated with migration. When we compare our findings to previous algorithms, it's clear that our method substantially reduces the costs linked to network migration, enhances the overall profitability of services, and achieves a more favorable balance between SFC latency and migration costs.
卫星-地面集成网络中成本感知服务功能链迁移
卫星与地面网络(SGIN)的整合是 6G 移动技术演进过程中的一大进步。卫星的快速移动导致网络拓扑结构的迅速变化。通过调整服务功能链(SFC)以适应这些频繁的变化,就有可能减少 SFC 时延并提升用户体验。本研究解决了 SFC 在动态 SGIN 框架内迁移的难题。我们最初为 VNF 迁移和 SFC 重新配置任务开发了一个数学公式,目的是优化总的系统效益。我们引入了一种增强型遗传算法作为解决方案,在 SFC 延迟和迁移相关费用之间达成了最佳折衷。将我们的研究结果与之前的算法进行比较后发现,我们的方法明显大幅降低了与网络迁移相关的成本,提高了服务的整体盈利能力,并在 SFC 延迟和迁移成本之间实现了更有利的平衡。
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