This letter presents a fully soft dielectric elastomer generator (DEG) based on a capacitive kinetic-energy-harvesting mechanism. First, using the principle of a passive charge pump, a self-cycling conditioning circuit topology is proposed. Through the electrical reciprocity of a cyclically deforming DEG and another capacitor in series with it, the generated charge can be continuously supplied to the load, via a bilateral conditioning bridge. The antagonistic dual-DEG scheme not only produces a larger potential to drive more charge in the flow but also provides a basic solution to soften the whole device. A further measure is to replace the bridge diodes with special dielectric elastic switches (DESs), which can be embedded into the DEG and...
In this letter, a theoretical framework describing an energy harvesting cycle including the loss of ...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
Energy harvesting based on dielectric elastomeric materials, in nature, embodies a capacitive kineti...
Energy harvesting based on dielectric elastomeric materials, in nature, embodies a capacitive kineti...
Dielectric elastomer (DE) generator (DEG) employs a soft capacitive transducer. This transducer is m...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...
4siThe performance of energy harvesting generators based on dielectric elastomers is investigated in...
4siA predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic mode...
AbstractThe performance of energy harvesting generators based on dielectric elastomers is investigat...
none3noDielectric Elastomers (DEs) are a very promising technology for the development of energy har...
This paper optimizes the energy harvesting cycle of dissipative dielectric elastomer generators (DEG...
This paper reports the design, fabrication, and testing of a soft dielectric elastomer power generat...
In this letter, a theoretical framework describing an energy harvesting cycle including the loss of ...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...
Energy harvesting based on dielectric elastomeric materials, in nature, embodies a capacitive kineti...
Energy harvesting based on dielectric elastomeric materials, in nature, embodies a capacitive kineti...
Dielectric elastomer (DE) generator (DEG) employs a soft capacitive transducer. This transducer is m...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
The maximum energy density of a dielectric elastomer generator (DEG) represents the potential energy...
4siThe performance of energy harvesting generators based on dielectric elastomers is investigated in...
4siA predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic mode...
AbstractThe performance of energy harvesting generators based on dielectric elastomers is investigat...
none3noDielectric Elastomers (DEs) are a very promising technology for the development of energy har...
This paper optimizes the energy harvesting cycle of dissipative dielectric elastomer generators (DEG...
This paper reports the design, fabrication, and testing of a soft dielectric elastomer power generat...
In this letter, a theoretical framework describing an energy harvesting cycle including the loss of ...
The capabilities of a dielectric elastomer generator formed by a hyper-electro-elastic annular membr...
Dielectric Elastomer Generators (DEGs) are devices that employ a cyclically variable membrane capaci...