The maximum output power of energy harvesters driven by harmonic vibrations is well known for a range of specific harvester architectures. An architecture-independent bound based on the mechanical input-power also exists and gives a strict limit on achievable power with one mechanical degree of freedom, but is a least upper bound only for lossless devices. We report a new theoretical bound on the output power of vibration energy harvesters that includes parasitic, linear mechanical damping while still being architecture independent. This bound greatly improves the previous bound at moderate force amplitudes and is compared to the performance of established harvester architectures which are shown to agree with it in limiting cases. The bound...
Vibration energy harvesting has emerged as a promising source of sustainable energy to power small e...
Vibration energy harvesting has emerged as a promising source of sustainable energy to power small e...
ABSTRACT: This article presents the maximum power operating conditions for piezoelectric energy harv...
With the large diversity in energy harvesters aiming to extract maximum power from broadband excitat...
With the large diversity in energy harvesters aiming to extract maximum power from broadband excitat...
Based on the formal analysis of a resonant electrostatic vibration energy harvester operating in con...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
Linear and nonlinear vibration energy harvesting has been the focus of considerable research in rece...
We consider the theoretical maximum extractable average power from an energy harvesting device attac...
Based on the formal analysis of a resonant electrostatic vibration energy harvester operating in con...
Piezoelectric vibration energy harvesting has attracted increasing attention in the last decade, and...
AbstractThis paper is concerned with the development of upper bounds on the energy harvesting perfor...
Power harvesting systems generate electric power from mechanical vibration using electromechanical t...
Vibration energy harvesting has emerged as a promising source of sustainable energy to power small e...
Vibration energy harvesting has emerged as a promising source of sustainable energy to power small e...
ABSTRACT: This article presents the maximum power operating conditions for piezoelectric energy harv...
With the large diversity in energy harvesters aiming to extract maximum power from broadband excitat...
With the large diversity in energy harvesters aiming to extract maximum power from broadband excitat...
Based on the formal analysis of a resonant electrostatic vibration energy harvester operating in con...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
In an attempt to improve the performance of vibration-based energy harvesters, many authors suggest ...
Linear and nonlinear vibration energy harvesting has been the focus of considerable research in rece...
We consider the theoretical maximum extractable average power from an energy harvesting device attac...
Based on the formal analysis of a resonant electrostatic vibration energy harvester operating in con...
Piezoelectric vibration energy harvesting has attracted increasing attention in the last decade, and...
AbstractThis paper is concerned with the development of upper bounds on the energy harvesting perfor...
Power harvesting systems generate electric power from mechanical vibration using electromechanical t...
Vibration energy harvesting has emerged as a promising source of sustainable energy to power small e...
Vibration energy harvesting has emerged as a promising source of sustainable energy to power small e...
ABSTRACT: This article presents the maximum power operating conditions for piezoelectric energy harv...