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Optimization model of conventional missile maneuvering route based on improved Floyd algorithm

机译:基于改进的Floyd算法的常规导弹机动路线优化模型

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Missile combat plays a crucial role in the victory of war under high-tech conditions. According to the characteristics of maneuver tasks of conventional missile units in combat operations, the factors influencing road maneuvering are analyzed. Based on road distance, road conflicts, launching device speed, position requirements, launch device deployment, Concealment and so on. The shortest time optimization model was built to discuss the situation of road conflict and the strategy of conflict resolution. The results suggest that in the process of solving road conflict, the effect of node waiting is better than detour to another way. In this study, we analyzed the deficiency of the traditional Floyd algorithm which may limit the optimal way of solving road conflict, and put forward the improved Floyd algorithm, meanwhile, we designed the algorithm flow which would be better than traditional Floyd algorithm. Finally, throgh a numerical example, the model and the algorithm were proved to be reliable and effective.
机译:导弹作战起着战争的高技术条件下的胜利至关重要的作用。据在作战行动中的常规导弹部队机动的任务,特点,影响公路机动的因素进行了分析。根据路途远近,道路冲突,发射装置速度,位置的要求,发射装置部署,隐蔽性等。在最短的时间优化模型的建立是为了讨论道路冲突的情况和解决冲突的战略。结果表明,在解决道路冲突的过程中,节点等待效果比绕道另一种方式更好。在这项研究中,我们分析了传统弗洛伊德算法可能会限制解决道路冲突的最佳方式,并提出了改进算法弗洛伊德的不足,同时,我们设计这比传统的弗洛伊德算法更好的算法流程。最后,throgh的数值示例中,模型和算法被证明是可靠和有效的。

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