Flapping Wing Vehicles
portes grátis
Flapping Wing Vehicles
Numerical and Experimental Approach
Yang, Lung-Jieh; Esakki, Balasubramanian
Taylor & Francis Ltd
09/2021
405
Dura
Inglês
9780367232573
15 a 20 dias
834
Descrição não disponível.
1. INTRODUCTION TO MICRO AERIAL VEHICLES. 2. IN-SITU LIFT MEASUREMENT USING PVDF WING SENSOR. 3. FLAPPING WING MECHANISM DESIGN. 4. FABRICATION OF FLAPPING WING MICRO AIR VEHICLES. 5. FLAPPING WING DESIGN. 6. CLAP-AND-FLING FLAPPING. 7. COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF FLAPPING WINGS. 8. SOAP FILM FLOW VISUALIZATION OF FLAPPING WING MOTION. 9. DYNAMICS AND IMAGE-BASED CONTROL OF FLAPPING WING MICRO AERIAL VEHICLES. 10. ARDUINO-BASED FLIGHT CONTROL OF ORNITHOPTERS. 11. SERVO DRIVEN FLAPPING WING VEHICLES. 12. FIGURE-OF-EIGHT MOTION AND FLAPPING WING ROTATION.
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Net Thrust;Flapping Frequency;Micro air vehicle (MAV);Flapping Wing;Unmanned air vehicle (UAV);Inclined Angles;Ornithopters;Flapping Mechanism;Soap Film Flow;Power Consumption;Wing Rotation;BLDC.;Servo;Stroke Angle;Wind Tunnel Experiments;Mem Sensor;BLDC Motor;Lift Coefficient;Gear Ratio;Wind Tunnel;Pid Controller;Stroke Reversal;Mem Process;Flapping Motion;Lift Force;Wind Speed;PVDF Piezoelectric Film;Bevel Gear;Maximum Thrust Force;Cfd Analysis
1. INTRODUCTION TO MICRO AERIAL VEHICLES. 2. IN-SITU LIFT MEASUREMENT USING PVDF WING SENSOR. 3. FLAPPING WING MECHANISM DESIGN. 4. FABRICATION OF FLAPPING WING MICRO AIR VEHICLES. 5. FLAPPING WING DESIGN. 6. CLAP-AND-FLING FLAPPING. 7. COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF FLAPPING WINGS. 8. SOAP FILM FLOW VISUALIZATION OF FLAPPING WING MOTION. 9. DYNAMICS AND IMAGE-BASED CONTROL OF FLAPPING WING MICRO AERIAL VEHICLES. 10. ARDUINO-BASED FLIGHT CONTROL OF ORNITHOPTERS. 11. SERVO DRIVEN FLAPPING WING VEHICLES. 12. FIGURE-OF-EIGHT MOTION AND FLAPPING WING ROTATION.
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Net Thrust;Flapping Frequency;Micro air vehicle (MAV);Flapping Wing;Unmanned air vehicle (UAV);Inclined Angles;Ornithopters;Flapping Mechanism;Soap Film Flow;Power Consumption;Wing Rotation;BLDC.;Servo;Stroke Angle;Wind Tunnel Experiments;Mem Sensor;BLDC Motor;Lift Coefficient;Gear Ratio;Wind Tunnel;Pid Controller;Stroke Reversal;Mem Process;Flapping Motion;Lift Force;Wind Speed;PVDF Piezoelectric Film;Bevel Gear;Maximum Thrust Force;Cfd Analysis