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An intelligent control method based on artificial neural network for numerical flight simulation of the basic finner projectile with pitching maneuver
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作者 yiming liang Guangning Li +3 位作者 Min Xu Junmin Zhao Feng Hao Hongbo Shi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期663-674,共12页
In this paper,an intelligent control method applying on numerical virtual flight is proposed.The proposed algorithm is verified and evaluated by combining with the case of the basic finner projectile model and shows a... In this paper,an intelligent control method applying on numerical virtual flight is proposed.The proposed algorithm is verified and evaluated by combining with the case of the basic finner projectile model and shows a good application prospect.Firstly,a numerical virtual flight simulation model based on overlapping dynamic mesh technology is constructed.In order to verify the accuracy of the dynamic grid technology and the calculation of unsteady flow,a numerical simulation of the basic finner projectile without control is carried out.The simulation results are in good agreement with the experiment data which shows that the algorithm used in this paper can also be used in the design and evaluation of the intelligent controller in the numerical virtual flight simulation.Secondly,combined with the real-time control requirements of aerodynamic,attitude and displacement parameters of the projectile during the flight process,the numerical simulations of the basic finner projectile’s pitch channel are carried out under the traditional PID(Proportional-Integral-Derivative)control strategy and the intelligent PID control strategy respectively.The intelligent PID controller based on BP(Back Propagation)neural network can realize online learning and self-optimization of control parameters according to the acquired real-time flight parameters.Compared with the traditional PID controller,the concerned control variable overshoot,rise time,transition time and steady state error and other performance indicators have been greatly improved,and the higher the learning efficiency or the inertia coefficient,the faster the system,the larger the overshoot,and the smaller the stability error.The intelligent control method applying on numerical virtual flight is capable of solving the complicated unsteady motion and flow with the intelligent PID control strategy and has a strong promotion to engineering application. 展开更多
关键词 Numerical virtual flight Intelligent control BP neural network PID Moving chimera grid
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灾后儿童抑郁与创伤后应激障碍症状关系的两年追踪 被引量:2
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作者 布威佐热姆.艾力 程锦 +2 位作者 梁一鸣 付琳 刘正奎 《科学通报》 EI CAS CSCD 北大核心 2018年第20期2071-2080,共10页
通过纵向设计,考察儿童抑郁与创伤后应激障碍(PTSD)的关系,并探究PTSD各维度与抑郁关系的差异.研究采用加州大学洛杉矶分校创伤后应激障碍反应指数(儿童修订版)和儿童抑郁量表,分别在舟曲泥石流发生后的3,15和27个月对当地的儿童(男452,... 通过纵向设计,考察儿童抑郁与创伤后应激障碍(PTSD)的关系,并探究PTSD各维度与抑郁关系的差异.研究采用加州大学洛杉矶分校创伤后应激障碍反应指数(儿童修订版)和儿童抑郁量表,分别在舟曲泥石流发生后的3,15和27个月对当地的儿童(男452,女618)进行了3次追踪调查.结果发现,创伤早期儿童PTSD和抑郁之间存在微弱的相互预测作用,创伤后期仅抑郁对PTSD显著预测.PTSD不同维度与抑郁的关系也存在差异:T1~T3阶段,抑郁对3个维度均具有持续的预测作用;而PTSD回避维度始终对抑郁无预测作用,闯入维度在T1~T2阶段有预测作用,高警觉在T1~T3阶段持续对抑郁有预测作用.研究结果表明,抑郁与PTSD的关系是随时间变化的;PTSD不同维度与抑郁的关系也存在差异.基于研究的发现,心理干预应根据不同创伤时程侧重于不同的症状.未来研究需要比较不同时程、不同事件类型、不同性别以及不同年龄段的PTSD与抑郁的关系. 展开更多
关键词 儿童 创伤后应激障碍(PTSD) 抑郁 追踪研究
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