In this paper, a low-frequency rotational piezoelectric energy harvester is proposed to operate out of resonance with the incorporation of a flexible stop. A numerical scheme is developed for the analysis of the contact problem of a harvester system impacting against a stop. The device consists of two flexible beams, two heavy masses joined by a linear spring and a single side spring stop. The purpose of the flexible stop is to limit the maximum displacement to preserve the structural integrity of the beams and to increase the harvested power in a low frequency range of operation (0.7–2.5 Hz). The rotational energy harvesting (REH) system vibrates at the frequency of the gravitational force, which acts as a periodic source and causes voltag...
This paper presents an innovative design of a low-frequency multi-modal system vibration-based energ...
In the present study, a rotational piezoelectric (PZT) energy harvester has been designed, fabricate...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
This paper analyzes the effects of rotational motion on the performance of an innovative piezoelectr...
This paper presents a rotary power scavenging unit comprised of two systems of flexible beams connec...
This paper presents a multi-beam energy harvester (MBT2ML) capable to convert kinetic energy from ro...
We present a novel design of a rotational power scavenging system as an alternative to cantilever be...
Rotational energy harvesting technology has attracted more and more attention recently. This paper p...
This paper demonstrates a novel methodology using a rotational flywheel to determine the energy conv...
The modeling and design of a piezoelectric flexible beam that can be used as an energy scavenger for...
The present study investigates the analysis and design of a vibration-based energy harvester, which ...
This paper proposes a rotational energy harvester using a piezoelectric bistable buckled beam to har...
Piezoelectric energy harvesting devices convert mechanical energy into electrical energy due to the ...
Two models for an energy harvester imparting rotational energy to piezoelectric materials are presen...
Harvesting energy from rotational motion for powering low-power electrical devices is attracting inc...
This paper presents an innovative design of a low-frequency multi-modal system vibration-based energ...
In the present study, a rotational piezoelectric (PZT) energy harvester has been designed, fabricate...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...
This paper analyzes the effects of rotational motion on the performance of an innovative piezoelectr...
This paper presents a rotary power scavenging unit comprised of two systems of flexible beams connec...
This paper presents a multi-beam energy harvester (MBT2ML) capable to convert kinetic energy from ro...
We present a novel design of a rotational power scavenging system as an alternative to cantilever be...
Rotational energy harvesting technology has attracted more and more attention recently. This paper p...
This paper demonstrates a novel methodology using a rotational flywheel to determine the energy conv...
The modeling and design of a piezoelectric flexible beam that can be used as an energy scavenger for...
The present study investigates the analysis and design of a vibration-based energy harvester, which ...
This paper proposes a rotational energy harvester using a piezoelectric bistable buckled beam to har...
Piezoelectric energy harvesting devices convert mechanical energy into electrical energy due to the ...
Two models for an energy harvester imparting rotational energy to piezoelectric materials are presen...
Harvesting energy from rotational motion for powering low-power electrical devices is attracting inc...
This paper presents an innovative design of a low-frequency multi-modal system vibration-based energ...
In the present study, a rotational piezoelectric (PZT) energy harvester has been designed, fabricate...
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high p...