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基于空间约束的舰载机出库调度 总被引:1,自引:0,他引:1
舰载机在航母上的调度问题是制约舰载机出动和回收的重要因素,以往研究主要集中在飞行甲板调度方面。针对舰载机在航母上的出入库问题进行研究,着力解决舰载机在航母上二、三波次的出动能力。首先对舰载机出库的流程进行分析,梳理制约因素。其次,应用柔性流水车间调度理论对空间约束条件下的舰载机出库调度问题进行建模。再次,对智能粒子群算法应用于舰载机出库调度问题进行分析,对编码进行设计,并给出算法流程。最后,对出库流程进行仿真,计算出最优出库方案及时间,验证了模型的准确性。 相似文献
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针对不同类型威胁体存在的战场环境中无人车辆战术机动路径规划问题,提出了一种基于威胁代价地图的粒子群优化(Particle Swarm Optimization,PSO)方法。借助极坐标系中关键点的极角进行路径描述,并使用分段3次Hermite插值方法形成光滑路径,将路径规划问题转化为关键点极角的参数优化问题。针对基本PSO(BPSO)算法存在的早熟收敛和后期迭代效率低的缺陷,借鉴以群集方式生活的物种按照不同任务对种群进行分工的机制,提出了一种基于多任务子群协同的改进粒子群优化(Particle Swarm Optimization based on the Multi—tasking Subpopu—lation Cooperation,PSO-MSC)算法。借助该算法的快速收敛和全局寻优特性实现了最优路径规划。实验结果表明:该算法可以快速有效地实现战场环境下无人车辆的战术机动路径规划,且规划路径安全、平滑。 相似文献
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《防务技术》2022,18(9):1643-1652
To objectively obtain the three-dimensional coordinates of the projectile fuze proximity explosion when projectile intersects the head of missile target, we propose a dynamic seven photoelectric detection screen test method, which is made up of six plane detection screens and a flash photoelectric dynamic detection screen. The three-dimensional coordinates calculation model of the projectile proximity explosion position based on seven plane detection screens with dynamic characteristics is established. According to the relation of the dynamic seven photoelectric detection screen planes and the time values, the analytical function of the projectile proximity explosion position parameters under non-linear motion is derived. The projectile signal filtering method based on discrete wavelet transform is explored in this work. Additionally, the projectile signal recognition algorithm using an improved particle swarm is proposed. Based on the characteristics of the time duration and the signal peak error for the projectile passing through the detection screen, the signals attribution of the same projectile passing through six detection screens are analyzed for obtaining precise time values of the same projectile passing through the detection screens. On the basis of the projectile fuze proximity explosion test, the linear motion model and the proposed non-linear motion model are used to calculate and compare the same group of projectiles proximity explosion position parameters. The comparison of test results verifies that the proposed test method and calculation model in this work accurately obtain the actual projectile proximity explosion position parameters. 相似文献