AbstractIn this paper, a rotary electromagnetic microgenerator is analyzed, designed and built. This microgenerator can convert human motions to electrical energy. The small size and use of a pendulum mechanism without gear are two main characteristics of the designed microgenerator. The generator can detect small vibrations and produce electrical energy. The performance of this microgenerator is evaluated by being installed peak-to-peak during normal walking. Also, the maximum harvested electrical energy during normal walking is around 416.6μW. This power is sufficient for many applications
This work presents a development and miniaturization of a rotational electromagnetic energy harvesti...
Abstract Background Biomechanical energy harvesting–generating electricity from people during daily ...
This work presents a development and miniaturization of a rotational electromagnetic energy harvesti...
AbstractIn this paper, a rotary electromagnetic microgenerator is analyzed, designed and built. This...
A comprehensive review of design and experimentation is presented in this research paper on sustaina...
Vibration energy harvesting is receiving a considerable amount of interest as a means for powering w...
Energy harvesting from environmental sources such as motion, light, and temperature changes, has bee...
Converting mechanical energy into electrical energy during human walking can power the portable elec...
This paper presents an electromagnetic based generator which is suitable for supplying generating po...
International audienceIn this paper, the authors present the energy production potential of a mechan...
International audienceIn this paper, the authors present the energy production potential of a mechan...
International audienceIn this paper, the authors present the energy production potential of a mechan...
AbstractThis paper presents development of the rotational electromagnetic energy harvesting transduc...
AbstractHuman power is defined as the use of human work for energy generation to power an electronic...
Converting energy from human upper limb motions into electrical energy is a challenge, as low freque...
This work presents a development and miniaturization of a rotational electromagnetic energy harvesti...
Abstract Background Biomechanical energy harvesting–generating electricity from people during daily ...
This work presents a development and miniaturization of a rotational electromagnetic energy harvesti...
AbstractIn this paper, a rotary electromagnetic microgenerator is analyzed, designed and built. This...
A comprehensive review of design and experimentation is presented in this research paper on sustaina...
Vibration energy harvesting is receiving a considerable amount of interest as a means for powering w...
Energy harvesting from environmental sources such as motion, light, and temperature changes, has bee...
Converting mechanical energy into electrical energy during human walking can power the portable elec...
This paper presents an electromagnetic based generator which is suitable for supplying generating po...
International audienceIn this paper, the authors present the energy production potential of a mechan...
International audienceIn this paper, the authors present the energy production potential of a mechan...
International audienceIn this paper, the authors present the energy production potential of a mechan...
AbstractThis paper presents development of the rotational electromagnetic energy harvesting transduc...
AbstractHuman power is defined as the use of human work for energy generation to power an electronic...
Converting energy from human upper limb motions into electrical energy is a challenge, as low freque...
This work presents a development and miniaturization of a rotational electromagnetic energy harvesti...
Abstract Background Biomechanical energy harvesting–generating electricity from people during daily ...
This work presents a development and miniaturization of a rotational electromagnetic energy harvesti...