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Application of a Multi-Satellite Dynamic Mission Scheduling Model Based on Mission Priority in Emergency Response

机译:基于任务优先级的多卫星动态任务调度模型在应急响应中的应用

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摘要

Emergency observations are missions executed by Earth observation satellites to support urgent ground operations. Emergency observations become more important for meeting the requirements of highly dynamic and highly time-sensitive observation missions, such as disaster monitoring and early warning. Considering the complex scheduling problem of Earth observation satellites under emergency conditions, a multi-satellite dynamic mission scheduling model based on mission priority is proposed in this paper. A calculation model of mission priority is designed for emergency missions based on seven impact factors. In the satellite mission scheduling, the resource constraints of scheduling are analyzed in detail, and the optimization objective function is built to maximize the observation mission priority and mission revenues, and minimize the waiting time for missions that require urgency for execution time. Then, the hybrid genetic tabu search algorithm is used to obtain the initial satellite scheduling plan. In case of the dynamic arrival of new emergency missions before scheduling plan releases, a dynamic scheduling algorithm based on mission priority is proposed to solve the scheduling problem caused by newly arrived missions and to obtain the scheduling plan of newly arrived missions. A simulation experiment was conducted for different numbers of initial missions and newly arrived missions, and the scheduling results were evaluated with a model performance evaluation function. The results show that the execution probability of high-priority missions increased because the mission priority was taken into account in the model. In the case of more satellite resources, when new missions dynamically arrived, the satellite resources can be reasonably allocated to these missions based on the mission priority. Overall, this approach reduces the complexity of the dynamic adjustment and maintains the stability of the initial scheduling plan.
机译:紧急观测是由地球观测卫星执行的任务,以支持紧急地面行动。紧急观察对于满足高度动态和高度时间敏感的观察任务(例如灾难监视和预警)的要求变得更加重要。针对紧急情况下地球观测卫星的复杂调度问题,提出了一种基于任务优先级的多卫星动态任务调度模型。基于七个影响因素,为应急任务设计了任务优先级计算模型。在卫星任务调度中,详细分析了调度的资源约束,并建立了优化目标函数,以最大化观测任务的优先级和任务收益,并最小化需要紧急执行时间的任务的等待时间。然后,使用混合遗传禁忌搜索算法获得初始卫星调度计划。在新的紧急任务在调度计划发布前动态到达的情况下,提出一种基于任务优先级的动态调度算法,以解决由于新到达的任务引起的调度问题,并获得新到达的任务的调度计划。针对不同数量的初始任务和新到达的任务进行了仿真实验,并使用模型性能评估功能评估了调度结果。结果表明,高优先级任务的执行概率增加了,因为模型中考虑了任务优先级。在有更多卫星资源的情况下,当新任务动态到达时,可以根据任务优先级合理地将卫星资源分配给这些任务。总的来说,这种方法降低了动态调整的复杂性,并保持了初始调度计划的稳定性。

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