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Optimization of High-Speed WIG Airfoil with Consideration of Non-ground Effect by a Two-Step Deep Learning Inverse Design Method
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作者 WANG Chenlu SUN Jianhong +4 位作者 ZHENG Daren SUN Zhi zuo si LIU Hao LI Pei 《Transactions of Nanjing University of Aeronautics and Astronautics》 2025年第1期56-69,共14页
Under complex flight conditions,such as obstacle avoidance and extreme sea state,wing-in-ground(WIG)effect aircraft need to ascend to higher altitudes,resulting in the disappearance of the ground effect.A design of hi... Under complex flight conditions,such as obstacle avoidance and extreme sea state,wing-in-ground(WIG)effect aircraft need to ascend to higher altitudes,resulting in the disappearance of the ground effect.A design of high-speed WIG airfoil considering non-ground effect is carried out by a novel two-step inverse airfoil design method that combines conditional generative adversarial network(CGAN)and artificial neural network(ANN).The CGAN model is employed to generate a variety of airfoil designs that satisfy the desired lift-drag ratios in both ground effect and non-ground effect conditions.Subsequently,the ANN model is utilized to forecast aerodynamic parameters of the generated airfoils.The results indicate that the CGAN model contributes to a high accuracy rate for airfoil design and enables the creation of novel airfoil designs.Furthermore,it demonstrates high accuracy in predicting aerodynamic parameters of these airfoils due to the ANN model.This method eliminates the necessity for numerical simulations and experimental testing through the design procedure,showcasing notable efficiency.The analysis of airfoils generated by the CGAN model shows that airfoils exhibiting high lift-drag ratios under both flight conditions typically have cambers of among[0.08c,0.105c],with the positions of maximum camber occurring among[0.35c,0.5c]of the chord length,and the leading-edge radiuses of these airfoils primarily cluster among[0.008c,0.025c] 展开更多
关键词 conditional generative adversarial network(CGAN) artificial neural network(ANN) airfoil design wing-in-ground(WIG)aircraft ground effect
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电动小汽车纵向主动避撞系统的建模与仿真
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作者 左思 张甫城 张新锋 《汽车实用技术》 2020年第19期183-186,共4页
随着我国汽车行业的快速发展,小轿车已经成为了普通家庭的标配,私家车的普及为我们的出行带来了极大的方便。在享受汽车带来的生活便利的同时,交通事故带来的人民生命、财产损失却不容忽视,因此,汽车主动安全性受到越来越广泛的关注。... 随着我国汽车行业的快速发展,小轿车已经成为了普通家庭的标配,私家车的普及为我们的出行带来了极大的方便。在享受汽车带来的生活便利的同时,交通事故带来的人民生命、财产损失却不容忽视,因此,汽车主动安全性受到越来越广泛的关注。文章利用Carsim软件进行整车建模,利用Matlab/Simulink软件搭建电动小汽车的主动避撞控制策略以及仿真模型包括加速/制动切换模型、电机逆模型、制动系逆模型。最后将各个模块连接在一起,形成了Matlab/Simulink与Carsim的闭环联合仿真系统。 展开更多
关键词 电动小汽车 纵向主动避撞 CARSIM 联合仿真
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