Smart Material Wing Morphing for Unmanned Aerial Vehicles.
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[1] Fred Austin,et al. Comparison of smart wing concepts for transonic cruise drag reduction , 1997, Smart Structures.
[2] Ping Zhang,et al. Design and Application of Cross-Shaped Cellular Honeycombs for a Variable Camber Wing , 2012 .
[3] Nhan Nguyen,et al. Aeroelastic Modeling of Elastically Shaped Aircraft Concept via Wing Shaping Control for Drag Reduction , 2012 .
[4] Scott Zink,et al. IMPACT OF ACTUATION CONCEPTS ON MORPHING AIRCRAFT STRUCTURES , 2004 .
[5] Daniel J. Inman,et al. Nonlinear Dynamic Model and Simulation of Morphing Wing Profile Actuated by Shape Memory Alloys , 2012 .
[6] John A. Shaw,et al. A reduced-order thermomechanical model and analytical solution for uniaxial shape memory alloy wire actuators , 2009 .
[7] Daniel J. Inman,et al. A novel unmanned aircraft with solid-state control surfaces: Analysis and flight demonstration , 2013 .
[8] Daniel J. Inman,et al. Aeroelastic performance evaluation of a flexure box morphing airfoil concept , 2014, Smart Structures.
[9] Karthikeyan Duraisamy,et al. Studies in Tip Vortex Formation, Evolution and Control , 2005 .
[10] Joaquim R. R. A. Martins,et al. Aerodynamic Shape Optimization of an Adaptive Morphing Trailing-Edge Wing , 2015 .
[11] William H. Rae,et al. Low-Speed Wind Tunnel Testing , 1966 .
[12] Vincent G. Ambrosia,et al. Unmanned Aircraft Systems in Remote Sensing and Scientific Research: Classification and Considerations of Use , 2012, Remote. Sens..
[13] Osgar John Ohanian,et al. Piezoelectric Morphing versus Servo-Actuated MAV Control Surfaces , 2012 .
[14] Daniel J. Inman,et al. Synergistic smart morphing aileron: Aero-structural performance analysis , 2014 .
[15] Manfred Morari,et al. Design and Realization of a Compliant Adaptable Wing , 2014 .
[16] Sang-Ryong Lee,et al. Smart composite shell structures with shape memory alloy wires and thin foils , 2005, SPIE Micro + Nano Materials, Devices, and Applications.
[17] Mujahid Abdulrahim,et al. Flight Characteristics of Shaping the Membrane Wing of a Micro Air Vehicle , 2005 .
[18] Allan R. Hambley. Electrical Engineering : Principles And Applications , 2009 .
[19] Joaquim R. R. A. Martins,et al. An Adjoint-based Derivative Evaluation Method for Time-dependent Aeroelastic Optimization of Flexible Aircraft , 2013 .
[20] Joycelyn S. Harrison,et al. Aircraft Morphing program , 1998, Smart Structures.
[21] John Valasek,et al. Morphing Aerospace Vehicles and Structures , 2012 .
[22] Johannes Scheller,et al. Hybrid Electroactive Wings Morphing for Aeronautic Applications , 2013 .
[23] Jinsong Leng,et al. Static aeroelastic deformation of flexible skin for continuous variable trailing-edge camber wing , 2011, Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[24] Nhan T. Nguyen,et al. Development of Variable Camber Continuous Trailing Edge Flap System , 2012 .
[25] Anna-Maria Rivas McGowan,et al. Recent results from NASA's morphing project , 2002, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[26] Joaquim R. R. A. Martins,et al. Aerostructural optimization of the common research model configuration , 2014 .
[27] P. Ghabezi,et al. Mechanical Analysis of Trapezoidal Corrugated Composite Skins , 2012, Applied Composite Materials.
[28] Daniel J. Inman,et al. Novel, Bidirectional, Variable-Camber Airfoil via Macro-Fiber Composite Actuators , 2010 .
[29] C. J. Smith,et al. Controlling UAS flight operations in a mixed-mode environment today , 2013, 2013 Integrated Communications, Navigation and Surveillance Conference (ICNS).
[30] Dan Clingman,et al. Control System Design for a Variable Camber Continuous Trailing Edge Flap System on an Elastic Wing , 2014 .
[31] J. N. Kudva,et al. Overview of the DARPA Smart Wing Project , 2004 .
[32] Onur Bilgen,et al. Aerodynamic and Electromechanical Design, Modeling and Implementation Of Piezocomposite Airfoils , 2010 .
[33] Andreas Kugi,et al. Control of a flexible beam actuated by macro-fiber composite patches: II. Hysteresis and creep compensation, experimental results , 2010 .
[34] Mark N. West,et al. DARPA/AFRL Smart Wing Phase 2 wind tunnel test results , 2002, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[35] Farhan Gandhi,et al. Zero Poisson’s Ratio Cellular Honeycombs for Flex Skins Undergoing One-Dimensional Morphing , 2010 .
[36] Terrence A. Weisshaar,et al. Morphing Aircraft Systems: Historical Perspectives and Future Challenges , 2013 .
[37] D. Ratna,et al. Recent advances in shape memory polymers and composites: a review , 2008 .
[38] Thomas F. Brooks,et al. Noise Radiation from a Continuous Mold-Line Link Flap Configuration , 2008 .
[39] Sridhar Kota,et al. Flight testing of Mission Adaptive Compliant Wing , 2007 .
[40] Carl P. Tilmann,et al. Design and application of compliant mechanisms for morphing aircraft structures , 2003, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[41] Daniel J. Inman,et al. Analytical and Experimental Characterization of Macro-Fiber Composite Actuated Thin Clamped-Free Unimorph Benders , 2010 .
[42] Minoru Taya,et al. Modeling for piezoelectric-shape memory alloy composites , 2011 .
[43] Eric H. Anderson,et al. Smart-Material Based Hydraulic Pump System for Actuation of a Morphing Wing , 2007 .
[44] Osgar John Ohanian,et al. Piezoelectric composite morphing control surfaces for unmanned aerial vehicles , 2011, Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[45] A. Lendlein,et al. Shape-memory polymers , 2002 .
[46] Shaker A. Meguid,et al. Shape morphing of aircraft wing: Status and challenges , 2010 .
[47] N. Hagood,et al. DEVELOPMENT OF PIEZOELECTRIC FIBER COMPOSITES FOR STRUCTURAL ACTUATION , 1993 .
[48] Yang Jie,et al. Research on flexible honeycomb structure design for morphing aircraft , 2011, Proceedings of 2011 International Conference on Electronic & Mechanical Engineering and Information Technology.
[49] Eric Ting,et al. Initial Assessment of a Variable-Camber Continuous Trailing-Edge Flap System on a Rigid Wing for Drag Reduction in Subsonic Cruise , 2013 .
[50] Andreas Kugi,et al. Control of a flexible beam actuated by macro-fiber composite patches: I. Modeling and feedforward trajectory control , 2010 .
[51] Brian J. German,et al. Lift Distributions for Minimum Induced Drag with Generalized Bending Moment Constraints , 2013 .
[52] Zafer Gürdal,et al. A Generic Morphing Wing Analysis and Design Framework , 2011 .
[53] E. Turkel,et al. PRECONDITIONING TECHNIQUES IN COMPUTATIONAL FLUID DYNAMICS , 1999 .
[54] Michel Verhaegen,et al. On the proof of concept of a ‘Smart’ wind turbine rotor blade for load alleviation , 2008 .
[55] David G. Kirkpatrick,et al. On the shape of a set of points in the plane , 1983, IEEE Trans. Inf. Theory.
[56] Brian Sanders,et al. Aerodynamic Performance of the Smart Wing Control Effectors , 2004 .
[57] Farhan Gandhi,et al. Skin design studies for variable camber morphing airfoils , 2008 .
[58] Jayanth N. Kudva,et al. Development of Next Generation Morphing Aircraft Structures , 2007 .
[59] Eric L. Brown,et al. Integrated strain actuation in aircraft with highly flexible composite wings , 2003 .
[60] D. M. Elzey,et al. A shape memory-based multifunctional structural actuator panel , 2005 .
[61] Daniel J. Inman,et al. A Review of Morphing Aircraft , 2011 .
[62] Shaker A. Meguid,et al. Bio-inspired wing morphing for unmanned aerial vehicles using intelligent materials , 2012 .
[63] Farhan Gandhi,et al. Flexible Skins for Morphing Aircraft Using Cellular Honeycomb Cores , 2010 .
[64] Yong Chen,et al. Design and verification of a smart wing for an extreme-agility micro-air-vehicle , 2011 .
[65] Paolo Ermanni,et al. Performance of a non-tapered 3D morphing wing with integrated compliant ribs , 2012 .
[66] William W. Gilbert,et al. Mission Adaptive Wing System for Tactical Aircraft , 1981 .
[67] David Lucia,et al. The SensorCraft Configurations: A Non-Linear AeroServoElastic Challenge for Aviation , 2005 .
[68] Richard J. Prazenica,et al. Design, characterization, and testing of macro-fiber composite actuators for integration on a fixed-wing UAV , 2014, Smart Structures.
[69] L. E. Cross,et al. Constitutive equations of symmetrical triple layer piezoelectric benders , 1999, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[70] Daniel J. Inman,et al. Experimental testing of spanwise morphing trailing edge concept , 2013, Smart Structures.
[71] In Lee,et al. Shape Adaptive Airfoil Actuated by a Shape Memory Alloy and its Aerodynamic Characteristics , 2009 .
[72] G.A.M. van Kuik,et al. Review of state of the art in smart rotor control research for wind turbines , 2010 .
[73] Michael I. Friswell,et al. MORPHING AIRCRAFT: AN IMPROBABLE DREAM? , 2014 .
[74] Ashok Gopalarathnam,et al. Ideal Lift Distributions and Flap Angles for Adaptive Wings , 2004 .
[75] L. Brinson. One-Dimensional Constitutive Behavior of Shape Memory Alloys: Thermomechanical Derivation with Non-Constant Material Functions and Redefined Martensite Internal Variable , 1993 .
[76] Brian Sanders,et al. Aerodynamic and Aeroelastic Characteristics of Wings with Conformal Control Surfaces for Morphing Aircraft , 2003 .
[77] G Horta Lucas,et al. Research Activities Within NASA''s Morphing Program , 1999 .
[78] Daniel J. Inman,et al. Synergistic Smart Morphing Aileron , 2013 .
[79] L. Lecce,et al. A Novel SMA-based Concept for Airfoil Structural Morphing , 2009, Journal of Materials Engineering and Performance.
[80] Nhan T. Nguyen,et al. Aeroelastic Wing Shaping Control Subject to Actuation Constraints. , 2014 .
[81] Jonathan D. Bartley-Cho,et al. Design, Fabrication, and Testing of a Scaled Wind Tunnel Model for the Smart Wing Project , 2004 .
[82] Metin Sitti,et al. Shape Memory Polymer-Based Flexure Stiffness Control in a Miniature Flapping-Wing Robot , 2012, IEEE Transactions on Robotics.
[83] Paul M. Weaver,et al. Design and testing of a deformable wind turbine blade control surface , 2012 .
[84] Vinod K. Lakshminarayan,et al. Computational investigation of micro-scale coaxial rotor aerodynamics in hover , 2010 .
[85] Karthik Duraisamy,et al. Assessment of Transition Model and CFD Methodology for Wind Turbine Flows , 2012 .
[86] Paul H. Mirick,et al. Low-cost piezocomposite actuator for structural control applications , 2000, Smart Structures.
[87] Eric Ting,et al. Flutter Analysis of Mission-Adaptive Wing with Variable Camber Continuous Trailing Edge Flap , 2014 .
[88] Chetan S. Jarali,et al. Constitutive modeling of SMA SMP multifunctional high performance smart adaptive shape memory composite , 2010 .
[89] Min-Soo Jeong,et al. Morphing Wing Mechanism Using an SMA Wire Actuator , 2012 .
[90] Armando R. Rodriguez. Morphing Aircraft Technology Survey , 2007 .