期刊文献+

Space range estimate for battery-powered vertical take-off and landing aircraft 被引量:1

Space range estimate for battery-powered vertical take-off and landing aircraft
下载PDF
导出
摘要 A novel method for estimating the space range of battery-powered vertical take-off and landing(VTOL) aircraft is presented. The method is based on flight parameter optimization and numerical iteration. Subsystem models including required thrust, required power and battery discharge models are presented. The problem to be optimized is formulated, and then case study simulation is conducted using the established method for quantitative analysis. Simulation results show that the space range of battery-powered VTOL aircraft in a vertical plane is an oblate curve, which appears horizontally long but vertically short, and the peak point is not located on the vertical climb path. The method and results are confirmed by parameter analysis and validations. A novel method for estimating the space range of battery-powered vertical take-off and landing(VTOL) aircraft is presented. The method is based on flight parameter optimization and numerical iteration. Subsystem models including required thrust, required power and battery discharge models are presented. The problem to be optimized is formulated, and then case study simulation is conducted using the established method for quantitative analysis. Simulation results show that the space range of battery-powered VTOL aircraft in a vertical plane is an oblate curve, which appears horizontally long but vertically short, and the peak point is not located on the vertical climb path. The method and results are confirmed by parameter analysis and validations.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3338-3346,共9页 中南大学学报(英文版)
关键词 battery-powered aircraft vertical take-off and landing space range tailsitter 垂直起降飞机 电池供电 空间范围 距离估计 定量分析方法 放电模型 垂直起飞 电池驱动
  • 相关文献

参考文献20

  • 1Vertical take-off and landing experimental aircraft (VTOL X-Plane)[R].DARPA-BAA-13-19.[2013-02-25].
  • 2STONE R H.The T-wing tail-sitter unmanned air vehicle:From design concept to research flight vehicle[J].Proc IMechE,Part G: Journal of Aerospace Engineering,2004,218:417-433.
  • 3STONE R H,ANDERSON P,HUTCHISON C,TSAI A,GIBBENS P,WONG K C.Flight testing of the T-wing tail-sitter unmanned air vehicle[J].Journal of Aircraft,2008,45(2):673-685.
  • 4ARGYLE M E,BEARD R W,MORRIS S.The V-bat tail-sitter dynamic model and control architecture[C]// American Control Conference.Washington:AACC,2013:806-811.
  • 5MOSCHETTA J,BATAILLE B,THIPYOPAS C,SHKARAYEV S.On fixed-wing micro-air vehicles with hovering capabilities[C]//46th AIAA Aerospace Sciences Meeting and Exhibit.Reno,Nevada: AIAA,2008:1-13.
  • 6http://www.sikorsky.com/lnnovation/Technologies.[2014-05-28].
  • 7DORRINGTON G E,MCINTYRE A J D.Performance of battery powered aircraft[C]// Proceedings of the Royal Aeronautical Society General Aviation Conference.Cambridge,2008.
  • 8REID C M,MANZO M A,LOGAN M J.Performance characterization of a lithium-ion gel polymer battery power supply system for an unmanned aerial vehicle[R].Cleveland,Ohio:NASA,2004.
  • 9DORRINGTON G E.Performance of battery-powered airships[J].Proc IMechE,Part G:Journal of Aerospace Engineering,2007,221:91-104.
  • 10TRAUB L W.Range and endurance estimates for battery powered aircraft[J].Journal of Aircraft,2011,48(2):703-70?.

同被引文献19

引证文献1

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部