期刊文献+

二元翼段间隙非线性颤振的模糊控制 被引量:3

Airfoil control surface LCO suppression with Fuzzy logic control
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摘要 根据模糊控制不依赖于被控对象的精确模型,对参数变化不敏感,具有很强鲁棒性的特点,提出一种模糊逻辑控制器,对包含间隙的二元机翼极限环振荡进行控制,并对其响应机理进行探讨和研究。数值仿真结果表明,模糊控制器能够有效抑制非线性极限环振动,使系统迅速达到稳定,提高系统颤振速度。 A method using fuzzy logic-based control to suppress limit cycle oscillation(LCO) of an airfoil with control panel freeplay was studied.As fuzzy logic control was not dependent on the accurate model of a controlled object and not sensitive to varying of its parameters,a fuzzy logic controller was proposed to control LCO of an airfoil with control panel freeplay.The response mechanism of the airfoil system was explored.The system state-space function was built in MATLAB/SIMULINK environment.The simulation results showed that such a controller can suppress the non-linear LCO of the airfoil system effectively,quickly stabilize the system and improve the system flutter speed.
出处 《振动与冲击》 EI CSCD 北大核心 2012年第6期58-61,82,共5页 Journal of Vibration and Shock
基金 国家自然科学基金(10872089)
关键词 气动伺服弹性 间隙 颤振 模糊控制 aeroservoelastic freeplay flutter fuzzy logic control
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参考文献16

  • 1Mukhopadhyay V.Historical perspective on analysis andcontrol of aeroelastic response[J].Journal of Guidance,Control,and Dynamics,2003,26(5):673-684.
  • 2任勇生,刘立厚,韩景龙,向锦武.飞行器非线性气动弹性和颤振主动控制研究进展[J].力学季刊,2003,24(4):534-540. 被引量:14
  • 3Wazak M,Srinathkumar S.Flutter suppression for the activeflexible wing control system design and experimentalvalidation[J].AIAA J,1992,138-145.
  • 4Conner M D,Tang D M,Dowell E H,et al.Nonlinearbehaviour of a typical airfoil section with a control surfacefreeplay:a numerical and experimental study[J].Journal ofFluids and Structures,1997,11:89-109.
  • 5赵永辉,胡海岩.具有操纵面间隙非线性二维翼段的气动弹性分析[J].航空学报,2003,24(6):521-525. 被引量:41
  • 6李道春,向锦武.间隙非线性气动弹性颤振控制[J].北京航空航天大学学报,2007,33(6):640-643. 被引量:16
  • 7Ko J,Kurdila A J,Strganac T W.Nonlinear control of aproto typical wing section with torsional nonlinearity[J].Journal of Guidance,Control,and Dynamics,1997,20(6):1181-1189.
  • 8Ko J,Strganac T W,Kurdila A J.Stability and control of astructurally nonlinear Aeroelastic system[J].Journal ofGuidance,Control,and Dynamics,1998,21(5):718-725.
  • 9Behal A,Marzocca P,Rao V M.Nonlinear adaptive controlof an aeroelastic two-dimensional lifting surface[J].Journalof Guidance,Control,and Dynamics,2006,29(2):382-390.
  • 10Xing W,Singh S N.Adaptive output feedback control of anonlinear aeroelastic stucture[J].Journal of Guidance,Control,and Dynamics,2000,23(6):1109-1116.

二级参考文献73

  • 1谢长川,吴志刚,杨超.大展弦比柔性机翼的气动弹性分析[J].北京航空航天大学学报,2003,29(12):1087-1090. 被引量:66
  • 2胡海岩.力学系统混沌的主动控制[J].力学进展,1996,26(4):453-463. 被引量:32
  • 3李道春,向锦武.迟滞非线性二元机翼颤振特性分析[J].航空学报,2007,28(3):600-604. 被引量:18
  • 4陶宝琪.智能材料结构[M].北京:国防工业出版社,1997..
  • 5Price S J. The aeroelastic response of a two-dimensional airfoil with bilinear and cubic structural nonlinearities[ J ]. Journal of Fluids and Structures, 1995, 9(2):175- 193.
  • 6Liu L, Wong Y S. Nonlinear aeroelastic analysis using the point transformation method, Part I: freeplay models [J].Journal of Sound and Vibration, 2002, 253(2): 447- 469.
  • 7Nagarajan H, Gordon J, et al. Unsteady aerodynamics of a flapped airfoil in subsonic flow by indicial concepts[R]. AIAA paper 1228, 1995.
  • 8Farhat C,Lesoinne M. Two efficient staggered algorithms for the serial and parallel solution of three-dimensional nonlinear transient aeroelastic problems[J]. Comput Methods Appl Mech Engrg, 2000,182 : 499-515.
  • 9Borland C J. XTRANS3S— transonic steady and unsteady aerodynamics for aeroelastic applications[J]. AFWAL TR-85-3146,1986.
  • 10Batina J T, Seidel D A, Bland S R,et ah Unsteady transonic flow calculations for realistic aircraft configurations[J]. J Aircraft, 1989,28,131-139.

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