DocumentCode
2391255
Title
Optimization and AMS modeling for design of an electrostatic vibration energy harvester’s conditioning circuit with an auto-adaptive process to the external vibration changes
Author
Galayko, Dimitri ; Basset, Philippe ; Paracha, Ayyaz Mahmood
Author_Institution
LIP6, Paris
fYear
2008
fDate
9-11 April 2008
Firstpage
302
Lastpage
306
Abstract
This paper presents an analysis and system-level design of a capacitive harvester of vibration energy composed from a mechanical resonator, capacitive transducer and a conditioning circuit based on the BUCK DC-DC converter architecture. The goal of the study is to identify optimal power performance of the system, to understand the electromechanical coupling phenomena and to propose the optimal timing of switching between charge pump and flyback circuits. To achieve the study we provided a VHDL-AMS/ELDO mixed model based on physical equations describing the resonator and transducer operation. To test different algorithms of the switching, we developed a behavioral functional model of the switch commuting between the two operation phases. We demonstrated that to guarantee an optimal power generation, switching should be driven by the internal state of the circuit. This paper provides the keys of the underlying analysis and provides a basic algorithm of the switch ldquointelligentrdquo command.
Keywords
DC-DC power convertors; capacitive sensors; electromechanical effects; energy harvesting; optimisation; resonators; vibrations; AMS modeling; BUCK DC-DC converter architecture; auto-adaptive process; capacitive transducer; charge pump; conditioning circuit; electromechanical coupling; electrostatic vibration; energy harvester; external vibration changes; flyback circuits; mechanical resonator; optimization; power generation; Coupling circuits; DC-DC power converters; Design optimization; Electrostatics; Switches; Switching circuits; System-level design; Timing; Transducers; Vibrations;
fLanguage
English
Publisher
ieee
Conference_Titel
Design, Test, Integration and Packaging of MEMS/MOEMS, 2008. MEMS/MOEMS 2008. Symposium on
Conference_Location
Nice
Print_ISBN
978-2-35500-006-5
Type
conf
DOI
10.1109/DTIP.2008.4753006
Filename
4753006
Link To Document