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An air-ground cooperative scheduling model considering traffic environment and helicopter performance

机译:考虑交通环境和直升机性能的空中合作调度模型

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摘要

Air-ground cooperative rescue is restricted by terrain, weather, and helicopter performance. The rescue is also affected by the damage in road segments, which will then affect the emergency decisions, such as allocation of materials, helicopter scheduling, and vehicle scheduling in air-ground combined transportation. This study aims to determine the optimization scheme for emergency materials scheduling and transport of the wounded under a low-altitude operating environment and differences in helicopter performance. First, the air-ground cooperative scheduling network was presented. The effects of terrain and weather in the disaster-stricken area, operating environment, and constraints for carrying tools (helicopters and ground vehicles) involved in the emergency scheduling problem were also studied. Then, an air-ground cooperative emergency scheduling model that considered the differences in helicopter performance was established, and the distribution path of materials and the wounded, distribution quantity of emergency materials and transportation modes adopted by different paths were solved and determined through the designed algorithm. The improved model shortened the rescue time by 7.51% and lowered the rescue cost by 4.18% compared with models from previous studies. The results suggest this method can save more time and financial resources in terms of the air-ground cooperative scheduling problem. This study also provides an effective scientific basis for air-ground cooperative rescue work.
机译:空地合作救援受到地形,天气和直升机性能的限制。救援也受到道路段损坏的影响,然后将影响紧急决策,例如材料的分配,直升机调度和空地联合运输中的车辆调度。本研究旨在确定低空操作环境下伤员的应急材料调度和运输优化方案,以及直升机性能的差异。首先,提出了空中地合协作调度网络。还研究了地形和天气在灾害区域,操作环境和携带紧急调度问题中携带工具(直升机和地面车辆)的影响。然后,建立了考虑直升机性能差异的空中地基协作应急调度模型,并通过设计的算法解决并确定了不同路径采用的应急材料和伤员分布量的分布路径,并通过设计的算法确定。与先前研究的模型相比,改进的模型将救援时间缩短了7.51%,并将救援成本降低了4.18%。结果表明这种方法可以在空袭协作调度问题方面节省更多时间和财力资源。本研究还为空境合作救援工作提供了有效的科学依据。

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