Measuring wind with Small Unmanned Aircraft Systems
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Matthew Marino | Graham Wild | A Mohamed | Alex Fisher | S Watkins | S Prudden | A. Fisher | G. Wild | M. Marino | S. Watkins | A. Mohamed | S. Prudden
[1] Reece A. Clothier,et al. An Evaluation of Multi-Rotor Unmanned Aircraft as Flying Wind Sensors , 2015 .
[2] I. V. D. Hoven. POWER SPECTRUM OF HORIZONTAL WIND SPEED IN THE FREQUENCY RANGE FROM 0.0007 TO 900 CYCLES PER HOUR , 1957 .
[3] Taehyung Kim,et al. Control System Design and Experimental Validation of Hybrid Multicopter for Endurance Enhancement , 2017, Asia-pacific Journal of Modeling and Simulation for Mechanical System Design and Analysis.
[4] J. Neidhoefer,et al. Wind Field Estimation for Small Unmanned Aerial Vehicles , 2010 .
[5] Simon Watkins,et al. Replication of Atmospheric Conditions for the Purpose of Testing MAVs. MAV Flight Environment Project , 2005 .
[6] H. L. Dryden,et al. The measurement of fluctuations of air speed by the hot-wire anemometer , 1930 .
[7] Nicholas Roy,et al. Wind Speed and Direction Detection by Means of Solid-state Anemometers Embedded on Small Quadcopters , 2016 .
[8] Liuping Wang,et al. Effects of actuator dynamics on disturbance rejection for small multi-rotor UAS , 2017, 2017 Australian and New Zealand Control Conference (ANZCC).
[9] Makoto Kumon,et al. Wind Estimation by Unmanned Air Vehicle with Delta Wing , 2005, Proceedings of the 2005 IEEE International Conference on Robotics and Automation.
[10] Matthias Bartholmai,et al. Real-time wind estimation on a micro unmanned aerial vehicle using its inertial measurement unit , 2015 .
[11] Aaron M. Harrington,et al. Power and weight considerations in small, agile quadrotors , 2014, Defense + Security Symposium.
[12] Genshe Chen,et al. Wind field estimation through autonomous quadcopter avionics , 2016, 2016 IEEE/AIAA 35th Digital Avionics Systems Conference (DASC).
[13] Kimon P. Valavanis,et al. On unmanned aircraft systems issues, challenges and operational restrictions preventing integration into the National Airspace System , 2008 .
[14] Jens Bange,et al. Measuring the local wind field at an escarpment using small remotely-piloted aircraft , 2017 .
[15] F. Beyrich,et al. Meteorological profiling of the lower troposphere using the research UAV "M 2 AV Carolo" , 2010 .
[16] Derek A. Paley,et al. Dynamic control of autonomous quadrotor flight in an estimated wind field , 2013, 52nd IEEE Conference on Decision and Control.
[17] Fabrizio Giulietti,et al. Maximum endurance for battery-powered rotary-wing aircraft , 2015 .
[18] Joris De Schutter,et al. Design and Control of an Unmanned Aerial Vehicle for Autonomous Parcel Delivery with Transition from Vertical Take-off to Forward Flight – VertiKUL, a Quadcopter Tailsitter , 2015 .
[19] Reece A. Clothier,et al. Structuring the safety case for unmanned aircraft system operations in non-segregated airspace , 2015 .
[20] G. Zilliac,et al. Calibration of seven-hole pressure probes for use in fluid flows with large angularity , 1989 .
[21] Mark D. Moore,et al. Benefits of Hybrid-Electric Propulsion to Achieve 4x Cruise Efficiency for a VTOL UAV , 2013 .
[22] M. Diehl,et al. Airborne Wind Energy , 2023, Green Energy and Technology.
[23] Giulio Avanzini,et al. Optimal performance and sizing of a battery-powered aircraft , 2016 .
[24] J. R. Wu,et al. Field measurements of boundary layer wind characteristics and wind-induced responses of super-tall buildings , 2008 .
[25] Derek A. Paley,et al. Onboard Flow Sensing for Rotary-Wing UAV Pitch Control in Wind , 2016 .
[26] Luis Felipe Gonzalez,et al. An Overview of Small Unmanned Aerial Vehicles for Air Quality Measurements: Present Applications and Future Prospectives , 2016, Sensors.
[27] Theodore Stathopoulos,et al. Wind loads on low-rise buildings: a review of the state of the art , 1984 .
[28] Jonathan P. How,et al. Comparison of Fixed and Variable Pitch Actuators for Agile Quadrotors , 2011 .
[29] I. C. Shepherd,et al. A Four Hole Pressure Probe for Fluid Flow Measurements in Three Dimensions , 1981 .
[30] Reece A. Clothier,et al. Fixed-wing MAV attitude stability in atmospheric turbulence—Part 2: Investigating biologically-inspired sensors , 2014 .
[31] H. Bergh,et al. Theoretical and experimental results for the dynamic response of pressure measuring systems , 1965 .
[32] Simon Watkins,et al. A feasibility study of micro air vehicles soaring tall buildings , 2012 .
[33] Valerie-Marie Kumer,et al. A comparison of LiDAR and radiosonde wind measurements , 2014 .
[34] Marcello R. Napolitano,et al. Wind field estimation in UAV formation flight , 2014, 2014 American Control Conference.
[35] Inderjit Chopra,et al. Design, development, and flight testing of a high endurance micro quadrotor helicopter , 2016 .
[36] Paul E. I. Pounds,et al. Towards a more efficient quadrotor configuration , 2013, 2013 IEEE/RSJ International Conference on Intelligent Robots and Systems.
[37] Nguyen Khoi Tran,et al. Quadrotor control in a wind field , 2015, 2015 International Conference on Unmanned Aircraft Systems (ICUAS).
[38] Douglas Paul Szczublewski. Gust Disturbance Analysis of a Micro Quadrotor Helicopter , 2012 .
[39] Emanuele Frontoni,et al. Unmanned Ground and Aerial Vehicles in extended range indoor and outdoor missions , 2014, 2014 International Conference on Unmanned Aircraft Systems (ICUAS).
[40] Giulio Avanzini,et al. Modeling and Simulation of a Quad-Tilt Rotor Aircraft , 2013 .
[41] Jonathan P. How,et al. Automated Battery Swap and Recharge to Enable Persistent UAV Missions , 2011 .
[42] M. Thompson,et al. The small scales of turbulence in atmospheric winds at heights relevant to MAVs , 2012 .
[43] Simon Watkins,et al. A flying anemometer quadrotor: Part 1 , 2016 .
[44] Pascal Brisset,et al. The Small Unmanned Meteorological Observer SUMO: A new tool for atmospheric boundary layer research , 2009 .
[45] Yubin Lan,et al. Effect of wind field below unmanned helicopter on droplet deposition distribution of aerial spraying , 2017 .
[46] W.E. Green,et al. A MAV that flies like an airplane and hovers like a helicopter , 2005, Proceedings, 2005 IEEE/ASME International Conference on Advanced Intelligent Mechatronics..
[47] Yao Song,et al. A wind estimation method for quadrotors using inertial measurement units , 2016, 2016 IEEE International Conference on Robotics and Biomimetics (ROBIO).
[48] Emanuele L. de Angelis. Stability analysis of a multirotor vehicle hovering condition , 2018 .
[49] Y. Chen,et al. Surface wind profile measurement using multiple small unmanned aerial vehicles , 2010, Proceedings of the 2010 American Control Conference.
[50] Mujahid Abdulrahim,et al. On Low Altitude Flight through the Atmospheric Boundary Layer , 2010 .
[51] Peter Richards,et al. Flow patterns and pressure field around a full-scale building , 1993 .
[52] J. Bange,et al. Measuring the Wind Vector Using the Autonomous Mini Aerial Vehicle M2AV , 2008 .
[53] G. Holland,et al. A Comparison of Vertical Atmospheric Wind Profiles Obtained from Monostatic Sodar and Unmanned Aerial Vehicle–Based Acoustic Tomography , 2017 .
[54] Anders la Cour-Harbo,et al. Autonomous Aerial Sensors for Wind Power Meteorology , 2010 .
[55] A Mohamed,et al. An anemometer for UAS-based atmospheric wind measurements , 2017 .
[56] Gregory C. Lewin,et al. Designing a hexacopter for the collection of atmospheric flow data , 2014, 2014 Systems and Information Engineering Design Symposium (SIEDS).
[57] Anthony Samaritano,et al. The LIFT! Project - Modular, Electric Vertical Lift System with Ground Power Tether , 2015 .
[58] Sami Haddadin,et al. The flying anemometer: Unified estimation of wind velocity from aerodynamic power and wrenches , 2016, 2016 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS).
[59] G. T. Walker. The Flapping Flight of Birds , 1925, The Journal of the Royal Aeronautical Society.
[60] Kenny C. S Kwok,et al. Wind tunnel study of pedestrian level wind environment around tall buildings: Effects of building dimensions, separation and podium , 2012 .
[61] Jochen H. Schiller,et al. Micro-drone for the characterization and self-optimizing search of hazardous gaseous substance sources: A new approach to determine wind speed and direction , 2010, 2010 IEEE International Workshop on Robotic and Sensors Environments.
[62] Jordin T. Kare,et al. Laser power beaming for defense and security applications , 2011, Defense + Commercial Sensing.
[63] Milan Simic,et al. Enabling technologies for autonomous MAV operations , 2017 .
[64] A. Musgrove,et al. Reynolds stress, mean velocity, and dynamic static pressure measurement by a four-hole pressure probe , 1997 .
[65] Reece A. Clothier,et al. Full-scale flow measurement on a tall building with a continuous-wave Doppler Lidar anemometer , 2016 .
[66] Demos P. Georgiou,et al. Fabrication and calibration of a sub-miniature 5-hole probe with embedded pressure sensors for use in extremely confined and complex flow areas in turbomachinery research facilities , 2014 .
[67] B. Witte,et al. Development of an Unmanned Aerial Vehicle for Atmospheric Turbulence Measurement , 2016 .
[68] Derek A. Paley,et al. Onboard Flow Sensing For Downwash Detection and Avoidance On Small Quadrotor Helicopters , 2015 .