International audiencePhysical activity involves movements, which can be considered sources of kinetic energy, that are expected to be important during sports activities. Several transducers can transform this energy into electrical energy. Piezoelectric generators are widely used, and several applications highlight their relevance. However, the generated output power is location dependent, and the analysis of the placement of this kind of generator can be challenging. In order to assess the availability of kinetic energy sources, an acceleration data analysis method is presented. Temporal and harvester model-based studies, using data from 17 inertial measurement units (IMUs) located across the whole human body, were conducted. The results ...
The aim of this research work is to estimate the amount of electricity produced to power up wearable...
The aim of this research work is to estimate the amount of electricity produced to power up wearable...
In this paper, two different piezoelectric transducers-a ceramic piezoelectric, lead zirconate titan...
International audiencePhysical activity involves movements, which can be considered sources of kinet...
The improvements in efficiency of electronic com- ponents and miniaturization is quickly pushing wea...
Harvesting energy from human body motion for powering small scale electronic devices is attracting r...
AbstractInertial energy harvesting is an emerging technology that can power electronic devices using...
This paper presents a preliminary investigation on energy harvesting from human walking via piezoele...
This chapter presents a study on energy harvesting from human walking via piezoelectric vibrating bi...
AbstractHuman power is defined as the use of human work for energy generation to power an electronic...
A comprehensive review of design and experimentation is presented in this research paper on sustaina...
The reduced power requirements of miniaturized electronics offer the opportunity to create devices w...
Implantable medical devices usually require a battery to operate and this can represent a severe res...
This paper investigates the statistical properties of human motion-based harvested power, and provid...
The present work concerns the concept and the modeling of a device for transforming a part of the me...
The aim of this research work is to estimate the amount of electricity produced to power up wearable...
The aim of this research work is to estimate the amount of electricity produced to power up wearable...
In this paper, two different piezoelectric transducers-a ceramic piezoelectric, lead zirconate titan...
International audiencePhysical activity involves movements, which can be considered sources of kinet...
The improvements in efficiency of electronic com- ponents and miniaturization is quickly pushing wea...
Harvesting energy from human body motion for powering small scale electronic devices is attracting r...
AbstractInertial energy harvesting is an emerging technology that can power electronic devices using...
This paper presents a preliminary investigation on energy harvesting from human walking via piezoele...
This chapter presents a study on energy harvesting from human walking via piezoelectric vibrating bi...
AbstractHuman power is defined as the use of human work for energy generation to power an electronic...
A comprehensive review of design and experimentation is presented in this research paper on sustaina...
The reduced power requirements of miniaturized electronics offer the opportunity to create devices w...
Implantable medical devices usually require a battery to operate and this can represent a severe res...
This paper investigates the statistical properties of human motion-based harvested power, and provid...
The present work concerns the concept and the modeling of a device for transforming a part of the me...
The aim of this research work is to estimate the amount of electricity produced to power up wearable...
The aim of this research work is to estimate the amount of electricity produced to power up wearable...
In this paper, two different piezoelectric transducers-a ceramic piezoelectric, lead zirconate titan...