Lung-Jieh Yang (Tamkang University, Tamsui, Taiwan), Balasubramanian Esakki (Vel Tech Rangarajan Dr Sagunthala R & D Ins
Flapping Wing Vehicles
Numerical and Experimental Approach
Lung-Jieh Yang (Tamkang University, Tamsui, Taiwan), Balasubramanian Esakki (Vel Tech Rangarajan Dr Sagunthala R & D Ins
Flapping Wing Vehicles
Numerical and Experimental Approach
- Gebundenes Buch
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
This book explains theoretical and experimental analysis on the design, development and flying of the flapping wing vehicle. It discusses design and kinematic analysis of various flapping wing mechanisms, measurement of flap angle/flapping frequency, computational fluid dynamic analysis of motion characteristics including manufacturing techniques.
Andere Kunden interessierten sich auch für
- Cornelia AltenbuchnerModern Flexible Multi-Body Dynamics Modeling Methodology for Flapping Wing Vehicles181,99 €
- Mechatronic Systems 173,99 €
- A. R. Jha Ph.DTheory, Design, and Applications of Unmanned Aerial Vehicles69,99 €
- Manoj Kumar Majumder (IIIT, Chhattisgarh, India)Introduction to Microelectronics to Nanoelectronics119,99 €
- Manoj Kumar Majumder (IIIT, Chhattisgarh, India)Introduction to Microelectronics to Nanoelectronics71,99 €
- AI in Manufacturing and Green Technology80,99 €
- Advances in Urban Engineering and Management Science Volume 2192,99 €
-
-
-
This book explains theoretical and experimental analysis on the design, development and flying of the flapping wing vehicle. It discusses design and kinematic analysis of various flapping wing mechanisms, measurement of flap angle/flapping frequency, computational fluid dynamic analysis of motion characteristics including manufacturing techniques.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 426
- Erscheinungstermin: 30. September 2021
- Englisch
- Abmessung: 240mm x 161mm x 27mm
- Gewicht: 804g
- ISBN-13: 9780367232573
- ISBN-10: 036723257X
- Artikelnr.: 62219946
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 426
- Erscheinungstermin: 30. September 2021
- Englisch
- Abmessung: 240mm x 161mm x 27mm
- Gewicht: 804g
- ISBN-13: 9780367232573
- ISBN-10: 036723257X
- Artikelnr.: 62219946
Prof. Lung-Jieh Yang received Ph.D. from Institute of Applied Mechanics, National Taiwan University in 1997 and has one-year sabbatical leave to Caltech for learning MEMS technology during 2000-2001. He is now a full professor and the former department chair of Mechanical Engineering, Tamkang University, and is also the editor-in-chief of "Journal of Applied Science and Engineering" (an EI/Scopus/ESCI journal with ISSN 1560-6686). Prof. Yang devoted to the researches of polymer microelectromechanical systems (polymer MEMS, especially parylene and gelatin techniques) and flapping wing micro air vehicles (FWMAVs) for 20 years and has ever published 66 journal papers, more than 100 conference papers, 2 textbooks about MEMS, and 17 US/Taiwan patents about polymer MEMS and micro ornithopters. He has ever been the Taiwan side's PI of the Indo-Taiwan project "Design, Development and Formation Control of Micro Ornithopters (102-2923-E-032-001-MY3)" during 2013-2016. In this project he built up not only the technical cooperation between India and Taiwan but also coauthors several international journal papers with some Indian scholars/institutes. Prof. Yang hosted 2 international conferences including "The International Conference on Biomimetic and Ornithopters (ICBAO-2015)" and "The International Conference on Intelligent Unmanned Systems (ICIUS-2017)." He is also one of the vice presidents of International Society of Intelligent Unmanned Systems (ISIUS) since 2017. Dr Esakki Balasubramanian received PhD in the field of Robotics and Control at Concordia University, Montreal, Canada. He has published two books, more than 100 Journals and Conference papers and 7 patents have been applied. He received grants from various Government of India funding programmes supported through DST, DRDO, ISRO, DBT. He has collaborated with Taiwan scientists under Indo-Taiwan schema (2013-16) for the development of micro aerial flapping wing vehicles and formation control through image processing techniques. He has designed a table top test rig integrated with two load cells to measure the aerodynamic forces of flapping wing vehicles funded by DRDO - AR & DB. He has also collaborated with Canadian scientists in developing and deployment of UAVs for railway bridge inspection. He developed amphibious UAV for collection of water samples in remote water bodies under Indo-Korea research schemes funded by DST, Govt. of India. His team developed UAVs for diverse applications including power line inspection, telecom tower inspection and radiation measurement, environmental monitoring, surveillance and traffic monitoring etc. His team won the first prize of Rs 5 lakhs in a National level competition organized by Power Grid Corporation Limited and prestigious telecom sector Aegis Graham bell award in the category of best innovative business model 2014. His research interests are UAVs, robotics, control and sensors with online data acquisition systems.
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.
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.
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.
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.