Aerodynamic Sensing for Autonomous Unmanned Aircraft Systems.

........................................................................................................ xv Chapter

[1]  Michael Ol,et al.  Experimental Investigation of Pitching and Plunging Airfoils at Reynolds Number between 1x10^4 and 6x10^4 , 2009 .

[2]  P. L. Deal,et al.  Simulator study of stall/post-stall characteristics of a fighter airplane with relaxed longitudinal static stability. [F-16] , 1979 .

[3]  J. R. Chambers,et al.  Aerodynamic characteristics of airplanes at high angles of attack , 1977 .

[4]  A. Vogel,et al.  Modern Optical Techniques in Fluid Mechanics , 1984 .

[5]  Naira Hovakimyan,et al.  Perching maneuver for an MAV augmented with an L1 adaptive controller , 2011 .

[6]  John J. Burken,et al.  Flight test of the X-29A at high angle of attack: Flight dynamics and controls , 1995 .

[7]  Carlos E. S. Cesnik,et al.  Effects of flexibility on the aerodynamic performance of flapping wings , 2011, Journal of Fluid Mechanics.

[8]  Russ Tedrake,et al.  Experiments in Fixed-Wing UAV Perching , 2008 .

[9]  J. Michalsky,et al.  Solar and Infrared Radiation Measurements , 2012 .

[10]  Clark N. Taylor,et al.  A Fixed-Wing, Mini-UAV System for Aerial Search Operations , 2007 .

[11]  Soon-Jo Chung,et al.  Experimental Demonstration of Perching by an Articulated Wing MAV , 2011 .

[12]  Andrew A Biewener,et al.  Dynamic pressure maps for wings and tails of pigeons in slow, flapping flight, and their energetic implications , 2005, Journal of Experimental Biology.

[13]  Ella M. Atkins,et al.  Autonomous Guidance and Control of the Flying Fish Ocean Surveillance Platform , 2009 .

[14]  H. Glauert The elements of aerofoil and airscrew theory , 1926 .

[15]  Bill Yenne Attack of the Drones , 2004 .

[16]  Taro Suzuki,et al.  A Small UAV for Immediate Hazard Map Generation , 2007 .

[17]  James Simon Dynamic derivative data for high angle of attack simulation , 1992 .

[18]  C. Ellington,et al.  The vortex wake of a ‘hovering’ model hawkmoth , 1997 .

[19]  G. Erickson,et al.  High Angle-of-Attack Aerodynamics , 1995 .

[20]  Derek A. Paley,et al.  Multi-vehicle Control in a Strong Floweld with Application to Hurricane Sampling , 2011 .

[21]  N. Harris McClamroch,et al.  Steady Aircraft Flight and Performance , 2011 .

[22]  Peretz P. Friedmann,et al.  Approximate Aeroelastic Modeling of Flapping Wings in Hover , 2013 .

[23]  James R Usherwood,et al.  The aerodynamic forces and pressure distribution of a revolving pigeon wing , 2009, Experiments in fluids.

[24]  B.H. Calhoun,et al.  A capacitance-based whisker-like artificial sensor for fluid motion sensing , 2010, 2010 IEEE Sensors.

[25]  Ella M. Atkins,et al.  Aerodynamic sensing for a fixed wing UAS operating at high angles of attack , 2012 .

[26]  Ella M. Atkins,et al.  Aerodynamic Sensing as Feedback for Ornithopter Flight Control , 2011 .

[27]  Soon-Jo Chung,et al.  Dynamics and Performance of Tailless Micro Aerial Vehicle with Flexible Articulated Wings , 2012 .

[28]  Eric N. Johnson,et al.  Flight-Test Results of Autonomous Airplane Transitions Between Steady-Level and Hovering Flight , 2008 .

[29]  Rick Lind,et al.  Characterizing Wing Rock with Variations in Size and Configuration of Vertical Tail , 2010 .

[30]  Michael S. Triantafyllou,et al.  Forces on oscillating foils for propulsion and maneuvering , 2003 .

[31]  Ou Ma,et al.  Development of a Small UAV with Autopilot Capability , 2011 .

[32]  John Sheridan,et al.  Dynamic Sensitivity to Atmospheric Turbulence of Unmanned Air Vehicles with Varying Configuration , 2010 .

[33]  F. Lehmann,et al.  The fluid dynamics of flight control by kinematic phase lag variation between two robotic insect wings , 2004, Journal of Experimental Biology.

[34]  Sergey V Shkarayev,et al.  Flight dynamics of flapping-wing air vehicle , 2008 .

[35]  Kamran Mohseni,et al.  Limitations of using the linearized equations of motion for MAV control , 2011 .

[36]  Fei-Bin Hsiao,et al.  The Design of a Small UAV System as a Testbed for Formation Flight , 2011 .

[37]  James E. Hubbard,et al.  Development of a Sensor Suite for a Flapping-Wing UAV Platform , 2008 .

[38]  Hao Liu,et al.  Recent progress in flapping wing aerodynamics and aeroelasticity , 2010 .

[39]  Wu Pin Deformation and Performance Measurements of MAV Flapping Wings , 2011 .

[40]  Cameron Tropea,et al.  Experimental investigation of a flapping wing model , 2009 .

[41]  Russ Tedrake,et al.  System Identification of Post Stall Aerodynamics for UAV Perching , 2009 .

[42]  J. Usherwood,et al.  The aerodynamics of revolving wings I. Model hawkmoth wings. , 2002, The Journal of experimental biology.

[43]  Timothy W. McLain,et al.  Autonomous Vehicle Technologies for Small Fixed-Wing UAVs , 2003, J. Aerosp. Comput. Inf. Commun..

[44]  Ella M. Atkins,et al.  Experimental investigation of the pressure, force, and torque characteristics of a rigid flapping wing , 2012 .

[45]  Aaron Altman,et al.  Streamwise Vorticity in Simple Mechanical Flapping Wings , 2007 .

[46]  Hugh A. Bruck,et al.  Measurement of Thrust and Lift Forces Associated With Drag of Compliant Flapping Wing for Micro Air Vehicles Using a New Test Stand Design , 2010 .

[47]  F. O. Carta,et al.  Analysis of unswept and swept wing chordwise pressure data from an oscillating NACA 0012 airfoil experiment. Volume 1: Technical Report , 1983 .

[48]  Lockheed Martin,et al.  ENHANCED STALL AND RECOVERY CONTROL SYSTEM (ESARCS) : A NONLINEAR MODEL-BASED FLIGHT CONTROL SYSTEM FOR UNINHABITED AIRBORNE VEHICLES (UAV) , 2002 .

[49]  Mark R. Cutkosky,et al.  Landing and Perching on Vertical Surfaces with Microspines for Small Unmanned Air Vehicles , 2010, J. Intell. Robotic Syst..

[50]  L. Johnson,et al.  Nighttime UAV Vineyard Mission: Challenges of See-and-Avoid in the NAS , 2004 .

[51]  M. Dickinson,et al.  Wing rotation and the aerodynamic basis of insect flight. , 1999, Science.

[52]  H. Bijl,et al.  Flow visualization and force measurements on a hovering flapping-wing MAV 'DelFly II' , 2009 .

[53]  J. R. Chambers High-angle-of-attack aerodynamics - Lessons learned , 1986 .

[54]  Adrian L. R. Thomas,et al.  Deformable wing kinematics in the desert locust: how and why do camber, twist and topography vary through the stroke? , 2009, Journal of The Royal Society Interface.

[55]  C. Somps,et al.  Dragonfly Flight: Novel Uses of Unsteady Separated Flows , 1985, Science.

[56]  Ephrahim Garcia,et al.  Longitudinal dynamics of a perching aircraft , 2006 .

[57]  Kevin Massey,et al.  Force Measurements and Flow Visualization for a Flexible Flapping Wing Mechanism , 2009 .

[58]  Jonathan P. How,et al.  Hover, Transition, and Level Flight Control Design for a Single-Propeller Indoor Airplane , 2007 .

[59]  Sreenatha G. Anavatti,et al.  Design and Implementation of Fuzzy Logic Controller for Wing Rock , 2004 .

[60]  Ella M. Atkins,et al.  An Aerodynamic Data System for Small Hovering Fixed-Wing UAS , 2009 .

[61]  Wei Shyy,et al.  Aerodynamics of Low Reynolds Number Flyers: Index , 2007 .

[62]  Shijun Guo,et al.  Design, Experiment and Aerodynamic Calculation of a Flapping Wing Rotor Micro Aerial Vehicle , 2011 .