Dynamic scheduling method for data relay satellite networks considering hybrid system disturbances

IF 5 2区 计算机科学 Q1 COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE Complex & Intelligent Systems Pub Date : 2023-09-14 DOI:10.1007/s40747-023-01227-9
Zongling Li, Xinjiang Chen, Qizhang Luo, Guohua Wu, Ling Wang
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Abstract

Abstract System disturbances, such as the change of required service durations, the failure of resources, and temporary tasks during the scheduling process of data relay satellite network (DRSN), are difficult to be predicted, which may lead to unsuccessful scheduling of tasks. A high-efficiency and robust DRSN calls for smarter and more flexible disturbances elimination strategies. Here, we unify the above three system disturbances as temporary task arrival and extend the static scheduling model of DRSN. Specifically, we derive and define a scheduling model that unifies the static scheduling and dynamic scheduling processes. Meanwhile, we propose a k -step dynamic scheduling algorithm considering breakpoint transmission ( k -steps-BT) to solve the above model. Based on the principle of backtracking algorithm and search tree, k -steps-BT can eliminate disturbances quickly by rescheduling tasks and can determine the rescheduling scheme when temporary tasks arrive. Finally, extensive experiments are carried out to verify the proposed model and algorithm. The results show that the proposed model and algorithm can significantly improve the task completion rate of dynamic scheduling without drastic adjustments to the static scheduling scheme.

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考虑混合系统扰动的数据中继卫星网络动态调度方法
数据中继卫星网络(DRSN)调度过程中出现的服务时间变化、资源失效、临时任务等系统扰动难以预测,可能导致任务调度失败。高效鲁棒的DRSN需要更智能、更灵活的干扰消除策略。本文将上述三种系统扰动统一为临时任务到达,扩展了DRSN的静态调度模型。具体来说,我们推导并定义了一个统一静态调度和动态调度过程的调度模型。同时,我们提出了一种考虑断点传输的k步动态调度算法(k -steps-BT)来解决上述模型。基于回溯算法和搜索树的原理,k -steps-BT可以通过重调度任务快速消除干扰,并在临时任务到达时确定重调度方案。最后,进行了大量的实验来验证所提出的模型和算法。结果表明,该模型和算法可以在不大幅度调整静态调度方案的情况下显著提高动态调度的任务完成率。
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来源期刊
Complex & Intelligent Systems
Complex & Intelligent Systems COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE-
CiteScore
9.60
自引率
10.30%
发文量
297
期刊介绍: Complex & Intelligent Systems aims to provide a forum for presenting and discussing novel approaches, tools and techniques meant for attaining a cross-fertilization between the broad fields of complex systems, computational simulation, and intelligent analytics and visualization. The transdisciplinary research that the journal focuses on will expand the boundaries of our understanding by investigating the principles and processes that underlie many of the most profound problems facing society today.
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