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Real Combat-Like Improved Model of Operational Effectiveness Evaluation of Air Defense Missile Weapon System
GONG Liang, WANG Qing-quan, LUO Hong-ji
Modern Defense Technology    2021, 49 (6): 9-15.   DOI: 10.3969/j.issn.1009-086x.2021.06.003
Abstract1061)      PDF (1261KB)(823)       Save
In order to deepen the exploration of equipment operational effectiveness evaluation method,taking an air defense missile weapon system as the evaluation object,based on the ADC (availability dependability capacity) effectiveness evaluation model,the real combat elements are integrated into the model from four aspects of weapon system combat process,human factors,target characteristics and confrontation environment.The example shows that the operational effectiveness of the air defense missile weapon system under certain environment condition and mission background is evaluated comprehensively,reasonably and accurately through the real combat-like improvement of the evaluation model.
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Intelligent Autonomous Decision-Making and Control of Morphing Aircraft
WANG Qing, LIU Hua-hua
Modern Defense Technology    2020, 48 (6): 5-11.   DOI: 10.3969/j.issn.1009-086x.2020.06.002
Abstract4676)      PDF (1019KB)(1569)       Save
Morphing aircraft can actively change the shape to meet different flight performance requirements,thereby adapting to different flight environments and tasks,so it has extremely high development potential and application value.With the development of artificial intelligence,the future morphing aircraft presents a trend of “intelligence and autonomy”.The intelligent morphing flight technology is one of the technological development trends that is most likely to bring revolutionary changes to future aerospace vehicles.Firstly,combined with the development history of the morphing aircraft,the development trend of the morphing aircraft is analyzed,and it is pointed out that the intelligent morphing aircraft is the development direction of the future aircraft.Secondly,the key issues that need to be solved in the intelligent deformation decision-making process of the morphing aircraft are analyzed.Taking the deep deterministic policy gradient algorithm in the artificial intelligence algorithm as an example,an intelligent,autonomous,and highly adaptable deformation decision-making design plan is proposed.Finally,the current difficulties and hot issues in the control design of the morphing aircraft are analyzed,focusing on the design of highly adaptable and highly autonomous control schemes under the strong coupling and strong uncertainty of the morphing aircraft.A solution for the intelligent autonomous control of the corresponding morphing aircraft is proposed.
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