• 所以飞行器设计采用折叠运动有利的。

    Therefore it is very important to consider adopting a wing flexure in flapping wing design.

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  • 本文研究刀机飞行器应用提供技术支持。

    The result of wind tunnel test provides guideline in aircraft design of flapping-wing MAV.

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  • 研究结果扑翼飞行器应用提供技术支持

    Results of wind tunnel test provide technology support for application of wing with wing-blade in flapping-wing micro air vehicle.

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  • 随着翼飞行器研究的不断深入,对控制问题研究引起了人们的重视。

    As micro flapping flight is investigated further, its control is paid more attention to.

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  • 仿真结果验证操控机制可以较好解决仅一对仿扑翼飞行器飞行动力问题

    This dissertation proposes a flapping control mechanism to solve the flight power problems in hovering flight control of the insect-like flapping micro aerial vehicles(IFMAVs).

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  • 本文微型翼飞行器特性稳定性操纵性的影响以及设计理论与方法进行了研究。

    Therefore, the characteristics, the influence on the stability and control, as well as the design theories of the FMAV empennage are studied here.

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  • 从2008年3开始第二阶段公司将利用6个月时间和63.6万美元这种3英寸扑翼飞行器系统进行论证。

    Phase II, which started in March, is a six-month, $636,000 program to demonstrate a rudimentary, 3-inch flapping-wing air vehicle system.

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  • 建立欧拉所确定飞行器载荷计算方法步骤,揭示出扑翼飞行器通过扑翼运动同时产生升力推力的机理。

    The evaluation methods and step of the loading for the FMAV are set up so that these Euler angles can be specified to provide wing motions that generate the lift and propulsion for the vehicle.

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  • 鸟类飞行参数进行统计分析基础之上,拟合出扑翼飞行的仿生学公式,并据此进行了微翼飞行器的仿生学初步设计

    Based on statistics and analysis of flying parameters of birds, the biomimetic formulas are brought forth and original FMAV design is carried out.

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  • 仿生学空气动力学研究均表明对于特征尺寸相当于鸟类或者昆虫微型飞行器来说,翼飞行器优于固定飞行器

    Research on bionics and aerodynamics indicates that flapping mode is better than rotorcraft and fixed-wing mode when they are about the size of small birds.

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  • 昆虫飞行机理进行了有价值的探讨,微型飞行器机体动力学和机空气动力学进行了详细的分析。

    The flight mechanism of birds and big insects was probed valuably, and airframe dynamics and airfoil aerodynamics of Flapping Wing Micro Aerial Vehicle (FWMAV) were researched.

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  • 研制象昆虫这样能够飞行微型飞行器成为目前昆虫运动仿生研究中的一个热门课题。

    It is important to study the biomechanics of an insect to improve the specification of Micro Air Vehicles (MAV).

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  • 启合式发明航空飞行器空气动力学领域解决旋转固定航空飞行器正交方向阻力升力增加问题

    The present invention relates to flyer and aerodynamics and can solve the problem that the resistance in orthogonal direction increases faster than lift in rotary wing and fixed wing flyer.

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  • 通过将试验数据经验公式计算结果进行比较,得到了升力与参数的关系,进一步设计扑翼微型飞行器提供了依据

    Instantaneous aerodynamic forces are calculated under a set of kinematic parameters. The study can be used as a preparation for the design of micro air robot with flapping wings.

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  • 通过将试验数据经验公式计算结果进行比较,得到了升力与参数的关系,进一步设计扑翼微型飞行器提供了依据

    Instantaneous aerodynamic forces are calculated under a set of kinematic parameters. The study can be used as a preparation for the design of micro air robot with flapping wings.

    youdao

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