Since power harvesting applications are often constrained by the low levels of power available from individual energy transducers, it is essential for energy converters to efficiently deal with multiple independent and heterogeneous sources. This paper will present two actively controlled power conversion schemes able to deal with multiple piezoelectric and radio-frequency (RF) energy sources. Both converters are based on active control and make use of an ultra-low power standard microcontroller unit whose intrinsic power consumption is negligible with respect to the harvested power in realistic operating conditions
Abstract—An adaptive energy-harvesting circuit with low power dissipation is presented and demonstra...
none7The current advances in ultra-low power design let foresee great opportunities in energy harves...
This report is a detailed study of the mechanisms that make up energy harvesting circuits, which ser...
Since power harvesting applications are often constrained by the low levels of power available from ...
This paper demonstrate the feasibility of micro-power converters based on active control for harvest...
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...
The paper introduces a power conversion technique based on active control for harvesting power from ...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
This paper presents a self-powered energy harvesting circuit based on synchronous charge extraction ...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
This paper presents recent research results obtained in the field of energy scavenging from multiple...
Abstract: A stand-alone circuit with ultra low power consumption is described and demonstrated in th...
This paper presents a micro-watt level energy harvesting system for piezoelectric transducers with a...
This paper presents a battery-less power management unit for piezoelectric energy harvesting which e...
Abstract—An adaptive energy-harvesting circuit with low power dissipation is presented and demonstra...
none7The current advances in ultra-low power design let foresee great opportunities in energy harves...
This report is a detailed study of the mechanisms that make up energy harvesting circuits, which ser...
Since power harvesting applications are often constrained by the low levels of power available from ...
This paper demonstrate the feasibility of micro-power converters based on active control for harvest...
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...
The paper introduces a power conversion technique based on active control for harvesting power from ...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
This paper presents a self-powered energy harvesting circuit based on synchronous charge extraction ...
The current advances in ultra-low power design let foresee great opportunities in energy harvesting ...
This paper presents recent research results obtained in the field of energy scavenging from multiple...
Abstract: A stand-alone circuit with ultra low power consumption is described and demonstrated in th...
This paper presents a micro-watt level energy harvesting system for piezoelectric transducers with a...
This paper presents a battery-less power management unit for piezoelectric energy harvesting which e...
Abstract—An adaptive energy-harvesting circuit with low power dissipation is presented and demonstra...
none7The current advances in ultra-low power design let foresee great opportunities in energy harves...
This report is a detailed study of the mechanisms that make up energy harvesting circuits, which ser...