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舰载机编队着舰是一个典型的动态行为过程,航母甲板可看作是单跑道的降落(起飞)平台。Petri网是对离散事件动态系统进行分析建模的重要工具,利用其动态性可对舰载机编队着舰的进近过程进行描述。文中介绍了几种Pe‐tri网的定义,分析舰载机着舰流程,建立进近终端区模型,通过Petri网仿真器模拟动态效果,并给出结果。 相似文献
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[目的]舰载机出动能力是航母综合作战能力的重要指标,而舰载机保障作业调度将直接影响舰载机的出动能力,因此对舰载机保障作业进行合理调度能有效提高航母的作战能力。[方法]通过将舰载机保障作业调度问题转换成车间作业调度问题,建立保障作业调度模型。对传统禁忌搜索算法的初始解、搜索策略和禁忌列表长度进行改进,以减少最大完工时间为目标,提出一种改进的禁忌搜索算法来求解该模型。[结果]通过实验仿真验证了改进的禁忌搜索算法对于舰载机保障作业调度问题的适用性,且该改进算法在计算速度和优化结果方面均优于传统禁忌搜索算法。[结论]改进禁忌搜索算法可以有效地对舰载机保障作业调度问题进行求解。 相似文献
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To implement efficient production control, this paper provides a timed colored Petri net (timed CPN) approach to performance modeling, real-timed dispatching and simulation of Panel hull block assembly system (PHBAS). The definition of Petri net is extended to accord with the real-world PHBAS’s organization, and the modeling method for hull flow production is provided in order to simplify modeling program. Using modeling and analyzing method, the dynamic characteristics of the system can be emulated and quantitatively calculated and work control tactics can be optimized. For the double bottom hull block shipbuilding system in a recently built shipyard in China, the simulation model with timed CPN was described and the system parameters and optimal task sequence which has the minimum operation time were obtained for a scheduling case. 相似文献
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A model of application system for man-machine-environment system engineering in vessels based on IDEF0 总被引:1,自引:0,他引:1
Applying man-machine-environment system engineering(MMESE)in vessels is a method to improve the effectiveness of the interaction between equipment, environment, and humans for the purpose of advancing operating efficiency, performance, safety, and habitability of a vessel and its subsystems. In the following research, the life cycle of vessels was divided into 9 phases, and 15 research subjects were also identified from among these phases. The 15 subjects were systemized, and then the man-machine-environment engineering system application model for vessels was developed using the ICAM definition method 0 (IDEF0), which is a systematical modeling method. This system model bridges the gap between the data and information flow of every two associated subjects with the major basic research methods and approaches included, which brings the formerly relatively independent subjects together as a whole. The application of this systematic model should facilitate the application of man-machine-environment system engineering in vessels, especially at the conceptual and embodiment design phases. The managers and designers can deal with detailed tasks quickly and efficiently while reducing repetitive work. 相似文献
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A new method of virtual ship assembly modeling which integrates ship three-dimensional design and ship construction planning was described in this paper. A workflow model of simulation modeling based on the virtual ship assembly process was also established; furthermore, a method of information transformation between the ship three-dimensional design and ship construction plan was formulated. To meet the requirements of information sharing between different systems in the ship virtual assembly, a simulation database was created by using the software engineering design method and the relational data model. With the application of this database, the information of ship three-dimensional design, construction planning, and virtual assembly can be integrated into one system. Subsequently, this new method was applied as a tool to simulate the virtual assembly of a ship, and the results guarantee its rationality and reliability. 相似文献
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将Petri网理论用于船舶电力系统故障诊断中,提出了一种改进的Petri网故障诊断模型。在基本Petri网诊断模型的基础上引入模糊推理规则形成模糊Petri网,说明了该方法的模型构建、推理过程及解析方法的表示。利用该方法对船舶电力系统进行故障诊断使推理过程简洁、诊断快速、诊断结果也更科学有效。 相似文献
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