1) Hypersonic vehicle
高超飞行器
1.
Aiming at the characteristics of constraint,multivariable coupling and nonlinear of dynamic equations for the hypersonic vehicle,time-varying adaptive controller was designed by predictive control theory.
针对高超飞行器姿态动力学模型多约束、多变量耦合和非线性的特点,采用预测控制理论设计了时变自适应控制器。
2) hypersonic vehicle
高超声速飞行器
1.
Optimization of glide trajectory for a hypersonic vehicle;
高超声速飞行器滑行航迹优化
2.
Heat flux measurement test of the hypersonic vehicle;
高超声速飞行器测热试验研究
3.
Fuzzy adaptive control for hypersonic vehicle via Backstepping method;
基于Backstepping的高超声速飞行器模糊自适应控制
3) hypersonic vehicle
高超音速飞行器
1.
Numerical simulation of aerothermal calculation of hypersonic vehicle;
高超音速飞行器头罩气动热流场数值模拟
2.
Influence of tailpipe nozzle configuration on longitudinal static stability of hypersonic vehicle;
尾喷管构型对高超音速飞行器纵向静稳定性的影响
4) Hypersonic skip vehicle
高超声速跳跃式飞行器
5) hypersonic cruise vehicle
高超声速巡航飞行器
1.
Based on system performance,guided by an object-oriented method,an integrated optimization design system of a hypersonic cruise vehicle was built through VC++.
从总体性能指标角度出发,采用面向对象的编程方法,基于Visual C++开发了高超声速巡航飞行器气动布局优化软件。
2.
An airframe/propulsion system integrated design o f hypersonic cruise vehicle overall performance analysis model is set up.
建立了高超声速巡航飞行器机身/推进系统一体化设计模型,对高超声速巡航飞行器机体/推进系统设计参数对性能的影响进行了分析,提出了一种新的设计参数灵敏度分析方法和设计参数取值域界定方法,确定了各设计参数的影响等级并对设计参数取值域进行了划分。
6) Air-breathing hypersonic vehicle
吸气式高超声速飞行器
1.
Air-breathing hypersonic vehicle(AHV) has been the next generation single stage to orbit vehicle and hypersonic cruise vehicle.
吸气式高超声速飞行器是下一代单级入轨和高超声速巡航研究的重点飞行器。
2.
A method using CFD technology is used for accurate prediction of aerodynamic force and heat of air-breathing hypersonic vehicles.
对吸气式高超声速飞行器而言,物面热流和摩阻的准确预测对飞行器设计及安全十分关键。
补充资料:高超
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