Earth observation resources are becoming increasingly indispensable in disaster relief, damage assessment and related domains. Many unpredicted factors, such as the change of observation task requirements, to the occurring of bad weather and resource failures, may cause the scheduled observation scheme to become infeasible. Therefore, it is crucial to be able to promptly and maybe frequently develop high-quality replanned observation schemes that minimize the effects on the scheduled tasks. A bottom-up distributed coordinated framework together with an improved contract net are proposed to facilitate the dynamic task replanning for heterogeneous Earth observation resources. This hierarchical framework consists of three levels, namely, neighboring resource coordination, single planning center coordination, and multiple planning center coordination. Observation tasks affected by unpredicted factors are assigned and treated along with a bottom-up route from resources to planning centers. This bottom-up distributed coordinated framework transfers part of the computing load to various nodes of the observation systems to allocate tasks more efficiently and robustly. To support the prompt assignment of large-scale tasks to proper Earth observation resources in dynamic environments, we propose a multiround combinatorial allocation (MCA) method. Moreover, a new float interval-based local search algorithm is proposed to obtain the promising planning scheme more quickly. The experiments demonstrate that the MCA method can achieve a better task completion rate for large-scale tasks with satisfactory time efficiency. It also demonstrates that this method can help to efficiently obtain replanning schemes based on original scheme in dynamic environments.
翻译:在救灾、损害评估和相关领域,地球观测资源日益变得不可或缺。许多未预见的因素,例如观测任务要求的变化,以及恶劣天气和资源失灵的发生,可能导致既定的观测计划变得不可行。因此,必须能够迅速而且也许经常地制定高质量的再规划观测计划,以尽量减少对预定任务的影响。提议一个自下而上分配的协调框架,加上一个改进的合同网,以便利对各种地球观测资源进行动态的任务重新规划。这一等级框架由三个层次组成,即:相邻的资源协调、单一规划中心协调和多个规划中心协调。受未预见因素影响的观测任务被指派并连同从资源到规划中心的自下而上路线一起处理。这一自下而上分布的协调框架将部分计算负荷转移到观测系统的各个节点,以便更高效和有力地分配任务。为了支持迅速分配大规模任务,以便在动态环境中适当进行地球观测资源,我们提议了一个多层次的原始组合分配方法。此外,一个新的基于浮动间隔因素的帮助中心协调和多重规划中心协调。一个基于浮动的当地搜索中心的搜索任务被分配任务被指派,连同从资源向规划中心自下到规划中心自下而上自下到规划的自上更有更令人满意的进度的路径的路径的路径,可以迅速展示一个更有希望的进度的进度的进度的进度规划方法。