This book presents select proceedings of the 5th International Conference on Vibration and Energy Harvesting Applications (VEH 2024). This book covers latest research and technological advances in the field of vibration analysis, energy harvesting, and its applications. Topics covered in the book include innovative research works related to vibration analysis, energy harvesting, their applications, and results on the mechanical design, optimization, dynamics, power management circuits and systems, MEMS technology, nanotechnology, new materials, self-powered IoT applications, and other related…mehr
This book presents select proceedings of the 5th International Conference on Vibration and Energy Harvesting Applications (VEH 2024). This book covers latest research and technological advances in the field of vibration analysis, energy harvesting, and its applications. Topics covered in the book include innovative research works related to vibration analysis, energy harvesting, their applications, and results on the mechanical design, optimization, dynamics, power management circuits and systems, MEMS technology, nanotechnology, new materials, self-powered IoT applications, and other related areas.. The book can be a valuable reference for researchers and professionals interested in vibration analysis, energy harvesting, its applications, and allied fields.
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Autorenporträt
Dr. Lihua Tang is Associate Professor with the Department of Mechanical and Mechatronics Engineering at the University of Auckland. He was Postdoctoral Research Associate/Fellow at NTU from February 2012 to January 2014. His main research interests include energy harvesting, passive and active vibration control, smart materials and structures, acoustic and mechanical metamaterial, structural dynamics and aerodynamics, acoustic energy transfer. Dr. Tang has authored and co-authored 3 book chapters and more than 200 technical papers in influential international journals and conferences. Dr. Kean Aw, born in Georgetown, Malaysia, is Professor at the Department of Mechanical and Mechatronics Engineering at the University of Auckland. He joined the university in 2004 and is currently Deputy Head of Department (Research). Prior to this academic position, he worked at Intel, Delta Prisma, Altera, and Navman for a total of 15 years. He earned his undergraduate degree in electrical and electronics engineering, M.Sc. in advanced manufacturing systems, and Ph.D. in applied physics (semiconductor physics). His main research interests include micro-systems and deployment of smart/functional materials and structures, such as conducting polymers and metallic oxides, which act as sensors and actuators in various applications, such as bio-sensors, medical/rehabilitation robots, micro-pumps, micro-manipulators, MEMS, and energy harvesters. He has more than 250 refereed publications, including books, book chapters, proceedings, and journals. Dr. Guobiao Hu is Assistant Professor with the IoT Thrust at HKUST(GZ). He received his Ph.D. from the University of Auckland, New Zealand. Before joining HKUST(GZ), he worked as Research Fellow in the School of Civil and Environmental Engineering, at Nanyang Technological University. His research interests include vibration energy harvesting, acoustic-elastic metamaterials, and intelligent material structures & systems. Dr. Hu has published more than 100 peer-reviewed technical papers in prestigious journals and international conferences. He was a recipient of the 2023 Best Paper Award in Energy Harvesting, awarded by the SMASIS Division of the ASME, and the Best Paper Finalist Award at the SPIE Conference on Smart Structures/NDE in 2018. He has also filed 3 patents. Dr. Junlei Wang is Professor in the school of Mechanical and Power Engineering at the Zhengzhou University. He received his B.E. degree and Ph.D. from the School of Power Engineering at the Chongqing University in 2009 and 2014, respectively. He was also a visiting scholar in the Department of Mechanical Engineering at the University of Auckland, New Zealand from 2019 to 2020. His main research interests include flow-induced vibration suppression, flow energy harvesting, triboelectric, piezoelectric and hybrid energy harvesting technology.
Inhaltsangabe
Chapter 1. Vibrational and Rotational Energy Harvesting.- Chapter 2. Nonlinear Energy Harvesting.- Chapter 3. Flow and Wave Energy Harvesting.- Chapter 4. Thermoacoustic Energy Harvesting and Refrigeration.- Chapter 5. Vibration Control, Energy Harvesting and Waveguiding.- Chapter 6. Piezoelectric Materials, Transducers and Circuitry.- Chapter 7. Smart Sensing and Diagnosis.
Chapter 1. Vibrational and Rotational Energy Harvesting.- Chapter 2. Nonlinear Energy Harvesting.- Chapter 3. Flow and Wave Energy Harvesting.- Chapter 4. Thermoacoustic Energy Harvesting and Refrigeration.- Chapter 5. Vibration Control, Energy Harvesting and Waveguiding.- Chapter 6. Piezoelectric Materials, Transducers and Circuitry.- Chapter 7. Smart Sensing and Diagnosis.
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