用于卫星 TT&C 资源动态调度的分层干扰传播机制和改进的合同网协议

Zhiqing Xiang;Yi Gu;Xinwei Wang;Guohua Wu
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引用次数: 0

摘要

在卫星跟踪遥测与指挥(TT&C)的实际工程中,经常会受到不可预测的外部因素的干扰,包括卫星TT&C任务量的临时大幅上升、部分TT&C资源的临时故障和失效等。为了提高卫星 TT&C 系统面对不确定动态干扰时的适应性和鲁棒性,针对卫星 TT&C 资源的动态调度问题,设计了一种分层干扰传播机制和改进的卫星 TT&C 资源契约网络动态调度方法。首先,分析了卫星 TT&C 资源动态调度问题的特点,以任务完成收益最大化和计划扰动程度最小化为加权优化目标,建立了数学模型。然后,提出了一种自下而上的卫星 TT&C 资源分布式动态协同调度框架,包括任务层、资源层、中心内部协同层和中心外部协同层。在任务层和资源层分别采用高效的启发式策略,以自下而上的方式将动态干扰从任务层逐层传播到中心外部协作层。我们在中心内部协作层和中心外部协作层采用改进的契约网络算法,在有效完成动态任务要求的同时,快速调整原有的调度计划,将干扰的影响降到最低。最后,进行了大量仿真实验,并与各种对比算法进行了比较。结果表明,所提出的算法能有效提高卫星 TT&C 资源动态调度问题的求解效果,具有良好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hierarchical Disturbance Propagation Mechanism and Improved Contract Net Protocol for Satellite TT&C Resource Dynamic Scheduling
The practical engineering of satellite tracking telemetry and command (TT&C) is often disturbed by unpredictable external factors, including the temporary rise in a significant quantity of satellite TT&C tasks, temporary failures and failures of some TT&C resources, and so on. To improve the adaptability and robustness of satellite TT&C systems when faced with uncertain dynamic disturbances, a hierarchical disturbance propagation mechanism and an improved contract network dynamic scheduling method for satellite TT&C resources were designed to address the dynamic scheduling problem of satellite TT&C resources. Firstly, the characteristics of the dynamic scheduling problem of satellite TT&C resources are analyzed, and a mathematical model is established with the weighted optimization objectives of maximizing the revenue from task completion and minimizing the degree of plan disturbance. Then, a bottom-up distributed dynamic collaborative scheduling framework for satellite TT&C resources is proposed, which includes a task layer, a resource layer, a central internal collaboration layer, and a central external collaboration layer. Dynamic disturbances are propagated layer by layer from the task layer to the central external collaboration layer in a bottom-up manner, using efficient heuristic strategies in the task layer and the resource layer, respectively. We use improved contract network algorithms in the center internal collaboration layer and the center external collaboration layer, the original scheduling plan is quickly adjusted to minimize the impact of disturbances while effectively completing dynamic task requirements. Finally, a large number of simulation experiments were carried out and compared with various comparative algorithms. The results show that the proposed algorithm can effectively improve the solution effect of satellite TT&C resource dynamic scheduling problems, and has good application prospects.
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