Energy Harvesting for Wearable Sensor Systems Energy Harvesting for Wearable Sensor Systems
Springer Series in Advanced Microelectronics

Energy Harvesting for Wearable Sensor Systems

Inductive Architectures for the Swing Excitation of the Leg

    • CHF 125.00
    • CHF 125.00

Beschreibung des Verlags

This book investigates several non-resonant inductive harvester architectures in order to find the magnet coil arrangement that generates the largest power output. The book is useful as a step-by-step guide for readers unfamiliar with this form of energy harvesting, but who want to build their own system models to calculate the magnet motion and, from that, the power generation available for body-worn sensor systems. The detailed description of system model development will greatly facilitate experimental work with the aim of fabricating the design with the highest predicted power output. 

Based on the simulated optimal geometry, fabricated devices achieve an average power output of up to 43 mW during walking, an amount of power that can supply modern low-power, body-worn systems.

Experiments were also carried out in industrial applications with power outputs up to 15 mW. In sum, researchers and engineers will find a step-by-step introduction to inductive harvesting and its modeling aspects for achieving optimal harvester designs in an efficient manner.

GENRE
Gewerbe und Technik
ERSCHIENEN
2021
18. Januar
SPRACHE
EN
Englisch
UMFANG
172
Seiten
VERLAG
Springer Nature Singapore
GRÖSSE
37.4
 MB

Andere Bücher in dieser Reihe

Applications of Emerging Memory Technology Applications of Emerging Memory Technology
2019
3D Microelectronic Packaging 3D Microelectronic Packaging
2020
Lock-in Thermography Lock-in Thermography
2010
Silicon Optoelectronic Integrated Circuits Silicon Optoelectronic Integrated Circuits
2019
High Dielectric Constant Materials High Dielectric Constant Materials
2006
System-level Test and Validation of Hardware/Software Systems System-level Test and Validation of Hardware/Software Systems
2006