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Analysis and Design of Fault-Tolerant Scheduling for Real-Time Tasks on Earth-Observation Satellites

机译:地球观测卫星实时任务容错调度的分析与设计

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Fault-tolerant scheduling is an efficient approach to improving the reliability of multiple earth-observing satellites especially in some emergent scenarios such as obtaining photographs on battlefields or earthquake areas. Unfortunately, little work has been done to deal with the fault-tolerant scheduling on satellites. To address this issue, this paper presents a novel dynamic fault-tolerant scheduling model using primary-backup policy to tolerate one satellite's permanent failure at one time instant. On this basis, we propose a novel fault-tolerant satellite scheduling algorithm named FTSS, in which an overlapping technology is adopted to improve the resource utilization. Besides, the FTSS employs the task merging strategies to further enhance the schedulability. To demonstrate the superiority of our FTSS, we conduct extensive experiments by simulations using real-world satellite parameters from STK to compare FTSS with other baseline algorithms. The experimental results indicate that FTSS efficiently improves the scheduling quality of others and is suitable for fault-tolerant satellite scheduling.
机译:容错调度是一种提高多颗地球观测卫星可靠性的有效方法,尤其是在某些紧急情况下,例如在战场或地震地区获取照片。不幸的是,在处理卫星上的容错调度方面做得很少。为了解决这个问题,本文提出了一种新颖的动态容错调度模型,该模型使用主备份策略来一次容忍一颗卫星的永久性故障。在此基础上,我们提出了一种新颖的容错卫星调度算法FTSS,该算法采用一种重叠技术来提高资源利用率。此外,FTSS还采用任务合并策略来进一步增强可调度性。为了展示FTSS的优越性,我们使用来自STK的真实卫星参数进行了仿真实验,以将FTSS与其他基线算法进行比较。实验结果表明,FTSS有效地提高了其他系统的调度质量,适合于容错卫星调度。

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