首页> 外文会议>International Conference on Automated Planning and Scheduling(ICAPS 2007); 2007; >Using Adaptive Priority Weighting to Direct Search in Probabilistic Scheduling
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Using Adaptive Priority Weighting to Direct Search in Probabilistic Scheduling

机译:在概率调度中使用自适应优先权加权直接搜索

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Many scheduling problems reside in uncertain and dynamic environments - tasks have a nonzero probability of failure and may need to be rescheduled. In these cases, an optimized solution for a short-term time horizon may have a detrimental impact over a broader time scale. We examine a scheduling domain in which time and energy on a phased array radar system is allocated to track objects in orbit around the earth. This domain requires probabilistic modeling to optimize the expected number of successful tasks on a particular day. Failed tasks must be attempted again on subsequent days. Given a set of task requests, we study two long-term objectives: percentage of requests initially successful, and the average time between successful request updates. We investigate adaptive priority weighting strategies that directly influence the short-term objective function and thus indirectly influence the long-term goals. We find that adapting priority weights based on when individual tasks succeed or fail allows a catalog of requests to be filled more quickly. Furthermore, with adaptive priorities, we observe a Pareto-front effect between the two long-term objectives as we modify how priorities are weighted, but an inverse effect of weighting when the priorities are not adapted.
机译:许多计划问题存在于不确定的动态环境中-任务的失败概率非零,可能需要重新计划。在这些情况下,针对短期时间范围的优化解决方案可能会对更广泛的时间范围产生不利影响。我们检查了一个调度域,在该域​​中,相控阵雷达系统上的时间和能量分配给了跟踪地球轨道上的物体。该域需要概率建模来优化特定日期的预期成功任务数。随后几天必须再次尝试失败的任务。给定一组任务请求,我们研究两个长期目标:最初成功的请求百分比,以及成功更新请求之间的平均时间。我们研究了自适应优先权重策略,这些策略直接影响短期目标函数,从而间接影响长期目标。我们发现,基于各个任务成功或失败的时间来调整优先级权重,可以更快地填充请求目录。此外,对于自适应优先级,当我们修改优先级的加权方式时,我们会观察到两个长期目标之间的帕累托效应,但是当优先级不适应时,加权的反作用。

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