首页> 外文期刊>Experimental Techniques >Development of flexible wings and flapping mechanism with integrated electronic control system, for micro air vehicle research
【24h】

Development of flexible wings and flapping mechanism with integrated electronic control system, for micro air vehicle research

机译:集成电子控制系统的柔性机翼和襟翼机构的开发,用于微型飞行器研究

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents the development of flexible wings, flapping mechanism, and integrated electronic control system (ECS) to emulate the bat wing flapping for the ongoing micro air vehicle (MAV) research. Three bat species having dimensions close to the design requirement of MAV, namely, Mormopterus Planiceps, Nytophilus Geoffroyi, and Scotorepens Balstoni were selected, and the average of their physical dimensions was chosen. The commercially available titanium alloy, Ti ± 6Al ± 4V, was used for the wing frame, and the membrane was made of latex. A four-bar slider-crank mechanism was designed and fabricated to facilitate the wing flapping; ECS controlled the flapping frequency in the real-time mode. The system was tested in open air wind tunnel at frequency 6 Hz, angle of attack (AOA) 0-50°, and velocity range 2-7 m s~(-1). The experimental flapping angle which is compared with the theoretical flapping angle was obtained from the analytical kinematic model. The mean lift and drag coefficients were also measured and the results were found to be excellent. Compared to the manual control and measurement of flapping frequency, the proposed ECS demonstrates efficient control and accurate measurement. Moreover, the tedious procedure involved in the repeated calibrations for the manual system is totally eliminated by ECS.
机译:本文介绍了柔性机翼,襟翼机构和集成电子控制系统(ECS)的发展,以模拟正在进行的微型飞行器(MAV)研究的蝙蝠翼襟翼。选择了三个尺寸接近MAV设计要求的蝙蝠物种,即Morpopterus Planiceps,Nytophilus Geoffroyi和Scotorepens Balstoni,并选择了它们的物理尺寸的平均值。机翼框架使用市售的钛合金Ti±6Al±4V,膜片由乳胶制成。设计和制造了四杆滑块曲柄机构,以帮助机翼拍打; ECS在实时模式下控制拍动频率。该系统在露天风洞中进行了测试,频率为6 Hz,迎角(AOA)为0-50°,速度范围为2-7 m s〜(-1)。从分析运动学模型中获得了与理论拍角比较的实验拍角。还测量了平均升力和阻力系数,发现结果极好。与手动控制和测量拍动频率相比,拟议的ECS演示了有效的控制和精确的测量。此外,ECS完全消除了手动系统重复校准所涉及的繁琐程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号