none3The paper presents a conversion scheme based on active control for harvesting power from multiple piezoelectric transducers with higher efficiency than traditional passive approaches. The use of multiple sources is often mandatory for boosting up the available output power. The proposed approach guarantees that each source operates efficiently, especially in case of irregular vibrations and heterogeneous transducers. A prototype system was developed and validated in realistic conditions: three 0.5x12.7x31.8 mm3 Q220-A4-303YB transducers from Piezo Systems of different wear conditions loaded with 20g tip masses were stimulated with the vibrations recorded in a train passenger car at 100 km/h. The converter harvested up to 142 uW@0.22g-R...
This paper describes an approach for harvesting electrical energy from a low-cost piezoelectric elem...
This doctorate thesis is focused on the design, fabrication and characterization of Micro Electro Me...
The Internet of Things (IoT) era has unlocked a new dimension for interconnected devices. Numerous s...
The paper presents a conversion scheme based on active control for harvesting power from multiple pi...
AbstractThis paper presents a conversion scheme based on active control for harvesting power from mu...
none4The paper introduces a power conversion technique based on active control for harvesting power ...
This paper demonstrate the feasibility of micro-power converters based on active control for harvest...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
none5noSince power harvesting applications are often constrained by the low levels of power availabl...
This paper presents recent research results obtained in the field of energy scavenging from multiple...
This paper presents a self-powered energy harvesting circuit based on synchronous charge extraction ...
none7The current advances in ultra-low power design let foresee great opportunities in energy harves...
This paper presents a micro-watt level energy harvesting system for piezoelectric transducers with a...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
A multifrequency mechanoelectrical piezoelectric converter intended for powering autonomous sensors ...
This paper describes an approach for harvesting electrical energy from a low-cost piezoelectric elem...
This doctorate thesis is focused on the design, fabrication and characterization of Micro Electro Me...
The Internet of Things (IoT) era has unlocked a new dimension for interconnected devices. Numerous s...
The paper presents a conversion scheme based on active control for harvesting power from multiple pi...
AbstractThis paper presents a conversion scheme based on active control for harvesting power from mu...
none4The paper introduces a power conversion technique based on active control for harvesting power ...
This paper demonstrate the feasibility of micro-power converters based on active control for harvest...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
none5noSince power harvesting applications are often constrained by the low levels of power availabl...
This paper presents recent research results obtained in the field of energy scavenging from multiple...
This paper presents a self-powered energy harvesting circuit based on synchronous charge extraction ...
none7The current advances in ultra-low power design let foresee great opportunities in energy harves...
This paper presents a micro-watt level energy harvesting system for piezoelectric transducers with a...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
A multifrequency mechanoelectrical piezoelectric converter intended for powering autonomous sensors ...
This paper describes an approach for harvesting electrical energy from a low-cost piezoelectric elem...
This doctorate thesis is focused on the design, fabrication and characterization of Micro Electro Me...
The Internet of Things (IoT) era has unlocked a new dimension for interconnected devices. Numerous s...