Energy Harvesting for Self-Powered Wearable Devices, Mohammad Alhawari; Baker Mohammad; Hani Saleh; Moh
Автор: Mohammad Alhawari; Baker Mohammad; Hani Saleh; Moh Название: Energy Harvesting for Self-Powered Wearable Devices ISBN: 3319625772 ISBN-13(EAN): 9783319625775 Издательство: Springer Рейтинг: Цена: 15372.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book discusses the design and implementation of energy harvesting systems targeting wearable devices. Finally, the authors present power management circuits for using multiple energy harvesting sources at the same time to power devices and to enhance efficiency of the system.
Описание: Nanoscale CMOS Materials and Devices.- Beyond CMOS Materials, Devices and Their Diagnostic.- New Functional Nanomaterials and Nanoscaled Devices for Energy Harvesting, Light Emission, Optoelectronics and THz Range.- NanoSensors and MEMS/NEMS.
Описание: The authors describe an integrated, indoor light energy harvesting system, based on a controller circuit that dynamically and automatically adjusts its operation to meet the actual light circumstances of the environment where the system is placed.
Описание: This book describes the development of core technologies to address two of the most challenging issues in research for future IT platform development, namely innovative device design and reduction of energy consumption.
Автор: Huisheng Peng Название: Fiber-Shaped Energy Harvesting and Storage Devices ISBN: 3662457431 ISBN-13(EAN): 9783662457436 Издательство: Springer Рейтинг: Цена: 13974.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This comprehensive book covers flexible fiber-shaped devices in the area of energy conversion and storage.
Автор: Dirk Spreemann; Yiannos Manoli Название: Electromagnetic Vibration Energy Harvesting Devices ISBN: 9400799551 ISBN-13(EAN): 9789400799554 Издательство: Springer Рейтинг: Цена: 15672.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book examines eight different commonly applied coupling architectures for electromagnetic vibration transducers used to harvest ambient energy for the supply of sensor monitoring systems. It identifies the architectures with the best output performance.
Описание: Nanoscale CMOS Materials and Devices.- Beyond CMOS Materials, Devices and Their Diagnostic.- New Functional Nanomaterials and Nanoscaled Devices for Energy Harvesting, Light Emission, Optoelectronics and THz Range.- NanoSensors and MEMS/NEMS.
Автор: Sergey N. Shevtsov; Arkady N. Soloviev; Ivan A. Pa Название: Piezoelectric Actuators and Generators for Energy Harvesting ISBN: 3030092836 ISBN-13(EAN): 9783030092832 Издательство: Springer Рейтинг: Цена: 15372.00 р. Наличие на складе: Поставка под заказ.
Описание: This book presents new approaches to R&D of piezoelectric actuators and generators of different types based on established, original constructions and contemporary research into framework of theoretical, experimental, and numerical methods of physics, mechanics, and materials science. Improved technical solutions incorporated into the devices demonstrate high output values of voltage and power, allowing application of the goods in various areas of energy harvesting. The book is divided into seven chapters, each presenting main results of the chapter, along with a brief exposition of novel findings from around the world proving context for the author’s results. It presents particular results of the Soviet and Russian schools of Mechanics and Material Sciences not previously available outside of Russia.
Автор: Sajid Rafique Название: Piezoelectric Vibration Energy Harvesting ISBN: 3319694405 ISBN-13(EAN): 9783319694405 Издательство: Springer Рейтинг: Цена: 18167.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The electromechanical coupling effect introduced by piezoelectric vibration energy harvesting (PVEH) presents serious modeling challenges. This book provides close-form accurate mathematical modeling and experimental techniques to design and validate dual function PVEH vibration absorbing devices as a solution to mitigate vibration and maximize operational efficiency. It includes in-depth experimental validation of a PVEH beam model based on the analytical modal analysis method (AMAM), precisely identifying electrical loads that harvest maximum power and induce maximum electrical damping. The author's detailed analysis will be useful for researchers working in the rapidly emerging field of vibration based energy harvesting, as well as for students investigating electromechanical devices, piezoelectric sensors and actuators, and vibration control engineering.
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