To address the current problems of poor generality,low real-time,and imperfect information transmission of the battlefield target intelligence system,this paper studies the battlefield target intelligence system from ...To address the current problems of poor generality,low real-time,and imperfect information transmission of the battlefield target intelligence system,this paper studies the battlefield target intelligence system from the top-level perspective of multi-service joint warfare.First,an overall planning and analysis method of architecture modeling is proposed with the idea of a bionic analogy for battlefield target intelligence system architecture modeling,which reduces the difficulty of the planning and design process.The method introduces the Department of Defense architecture framework(DoDAF)modeling method,the multi-living agent(MLA)theory modeling method,and other combinations for planning and modeling.A set of rapid planning methods that can be applied to model the architecture of various types of complex systems is formed.Further,the liveness analysis of the battlefield target intelligence system is carried out,and the problems of the existing system are presented from several aspects.And the technical prediction of the development and construction is given,which provides directional ideas for the subsequent research and development of the battlefield target intelligence system.In the end,the proposed architecture model of the battlefield target intelligence system is simulated and verified by applying the colored Petri nets(CPN)simulation software.The analysis demonstrates the reasonable integrity of its logic.展开更多
During the war,equipment is constantly being damaged with limited battlefield rush-repair time and power.Therefore,some military problems are presented in this paper.In order to get more fighting time for damaged equi...During the war,equipment is constantly being damaged with limited battlefield rush-repair time and power.Therefore,some military problems are presented in this paper.In order to get more fighting time for damaged equipment to participate in operation again as much as possible,three problems should be considered properly.The first problem is how to dynamically choose the most suitable damaged equipment for each repair group.The second one is how to divide tasks between different groups.The third one is how to determine execution sequence in the same group.A mathematical model is established to solve the dynamic battlefield rushrepair task scheduling problem(DBRTSP) in wartime.A variant genetic algorithm is designed to dynamically track the change of the optimal solution.A scheduling example is solved through Matlab.Results show that the proposed model is not only scientific and reasonable,but also convenient and efficient.展开更多
战场频率指配能够在复杂电磁环境下将战场中有限的频谱资源指配至用频装备,对用频装备作战的效能发挥与电磁频谱作战筹划具有重要意义。本文从数学模型、求解算法两个方面分别总结归纳了静态频率指配问题(static frequency assignment p...战场频率指配能够在复杂电磁环境下将战场中有限的频谱资源指配至用频装备,对用频装备作战的效能发挥与电磁频谱作战筹划具有重要意义。本文从数学模型、求解算法两个方面分别总结归纳了静态频率指配问题(static frequency assignment problem,S-FAP)与动态频率指配问题(dynamic frequency assignment problem,D-FAP)的研究现状,分析评述了模型的适用性及算法优缺点,最后对战场频率指配未来的发展趋势进行了展望。展开更多
基金supported by the National Natural Science Foundation of China(41927801).
文摘To address the current problems of poor generality,low real-time,and imperfect information transmission of the battlefield target intelligence system,this paper studies the battlefield target intelligence system from the top-level perspective of multi-service joint warfare.First,an overall planning and analysis method of architecture modeling is proposed with the idea of a bionic analogy for battlefield target intelligence system architecture modeling,which reduces the difficulty of the planning and design process.The method introduces the Department of Defense architecture framework(DoDAF)modeling method,the multi-living agent(MLA)theory modeling method,and other combinations for planning and modeling.A set of rapid planning methods that can be applied to model the architecture of various types of complex systems is formed.Further,the liveness analysis of the battlefield target intelligence system is carried out,and the problems of the existing system are presented from several aspects.And the technical prediction of the development and construction is given,which provides directional ideas for the subsequent research and development of the battlefield target intelligence system.In the end,the proposed architecture model of the battlefield target intelligence system is simulated and verified by applying the colored Petri nets(CPN)simulation software.The analysis demonstrates the reasonable integrity of its logic.
文摘During the war,equipment is constantly being damaged with limited battlefield rush-repair time and power.Therefore,some military problems are presented in this paper.In order to get more fighting time for damaged equipment to participate in operation again as much as possible,three problems should be considered properly.The first problem is how to dynamically choose the most suitable damaged equipment for each repair group.The second one is how to divide tasks between different groups.The third one is how to determine execution sequence in the same group.A mathematical model is established to solve the dynamic battlefield rushrepair task scheduling problem(DBRTSP) in wartime.A variant genetic algorithm is designed to dynamically track the change of the optimal solution.A scheduling example is solved through Matlab.Results show that the proposed model is not only scientific and reasonable,but also convenient and efficient.
文摘战场频率指配能够在复杂电磁环境下将战场中有限的频谱资源指配至用频装备,对用频装备作战的效能发挥与电磁频谱作战筹划具有重要意义。本文从数学模型、求解算法两个方面分别总结归纳了静态频率指配问题(static frequency assignment problem,S-FAP)与动态频率指配问题(dynamic frequency assignment problem,D-FAP)的研究现状,分析评述了模型的适用性及算法优缺点,最后对战场频率指配未来的发展趋势进行了展望。