AbstractThis paper reports the design, fabrication and experimental results of a low frequency electromagnetic energy harvester on FR4. The resonant frequency of the device is tuned electrically by using a generalized load (a capacitance in parallel with a resistance) instead of conventional resistive load. The device produces a maximum load power of 57μW across 3310Ω resistive load at 37.5Hz of untuned resonant frequency under 0.1g input acceleration. Later, the resonant frequency of the device is experimentally tuned up to 37Hz successfully by changing the load capacitance from 0 to 10μF. Though, this tuning comes with reduction in output power. It is observed that only 8.5% of the untuned maximum load power is obtained at the limit of th...
This study focuses on the design, simulation, and load power optimization for the development of a n...
AbstractThis paper presents an electromagnetic (EM) micro-power generator with tunable resonance fre...
We have designed and built macro-scale wideband electrostatic and electromagnetic power harvesters f...
A fundamental drawback of vibration-based energy harvesters is that they typically feature a resonan...
This paper investigates the linear response of an archetypal energy harvester that uses electromagn...
This paper focuses on the opportunities offered by electrical tuning to widen the bandwidth of Vibra...
Devices that harvest electrical energy from mechanical vibrations have the problem that the frequenc...
This paper presents the design and the manufacturing of an electromagnetic-transducer energy harvest...
In this paper we present a novel concept to efficiently harvest vibrational energy at low frequencie...
AbstractThis paper presents an optimization study to decrease the operation frequency and increase t...
This paper reports on a low frequency piezoelectric energy harvester that scavenges energy from a wi...
Based on the formal analysis of a resonant electrostatic vibration energy harvester operating in con...
This paper presents a tunable electromagnetic vibration-based micro-generator with closed loop frequ...
This work is concerned with the performance of a single degree of freedom electromagnetic energy har...
Advances in low power electronic devices design open up the possibility of self powering a small wi...
This study focuses on the design, simulation, and load power optimization for the development of a n...
AbstractThis paper presents an electromagnetic (EM) micro-power generator with tunable resonance fre...
We have designed and built macro-scale wideband electrostatic and electromagnetic power harvesters f...
A fundamental drawback of vibration-based energy harvesters is that they typically feature a resonan...
This paper investigates the linear response of an archetypal energy harvester that uses electromagn...
This paper focuses on the opportunities offered by electrical tuning to widen the bandwidth of Vibra...
Devices that harvest electrical energy from mechanical vibrations have the problem that the frequenc...
This paper presents the design and the manufacturing of an electromagnetic-transducer energy harvest...
In this paper we present a novel concept to efficiently harvest vibrational energy at low frequencie...
AbstractThis paper presents an optimization study to decrease the operation frequency and increase t...
This paper reports on a low frequency piezoelectric energy harvester that scavenges energy from a wi...
Based on the formal analysis of a resonant electrostatic vibration energy harvester operating in con...
This paper presents a tunable electromagnetic vibration-based micro-generator with closed loop frequ...
This work is concerned with the performance of a single degree of freedom electromagnetic energy har...
Advances in low power electronic devices design open up the possibility of self powering a small wi...
This study focuses on the design, simulation, and load power optimization for the development of a n...
AbstractThis paper presents an electromagnetic (EM) micro-power generator with tunable resonance fre...
We have designed and built macro-scale wideband electrostatic and electromagnetic power harvesters f...