DocumentCode
3604815
Title
Capacitive Energy Conversion With Circuits Implementing a Rectangular Charge-Voltage Cycle—Part 1: Analysis of the Electrical Domain
Author
Galayko, Dimitri ; Dudka, Andrii ; Karami, Armine ; O´Riordan, Eoghan ; Blokhina, Elena ; Feely, Orla ; Basset, Philippe
Author_Institution
Sorbonne Univ., Paris, France
Volume
62
Issue
11
fYear
2015
Firstpage
2652
Lastpage
2663
Abstract
Capacitive kinetic energy harvesters (KEH) employ conditioning circuits which achieve a dynamic biasing of the transducer´s variable capacitor. This paper, composed of two articles Part 1 and Part 2, proposes a unified theory describing electrical and electromechanical properties of an important and wide class of conditioning circuits: those implementing a rectangular charge-voltage cycle. The article Part 1 introduces a basic configuration of conditioning circuit implementing an ideal rectangular QV cycle, and discusses its known practical implementations: the Roundy charge pump with different flyback mechanisms, and configurations based on the Bennet´s doubler. In Part 1, the analysis is done in the electrical domain, without accounting for electromechanical coupling, while in Part 2, the full electromechanical system is analyzed. An optimization approach common to all configurations is proposed. A comparison is made between different topologies and operation modes, based on the maximal energy converted in one cycle under similar electrical and mechanical conditions. The last section discusses practical implementation of circuits with smart and adaptive behavior, and presents experimental results obtained with state-of-the art MEMS capacitive KEH devices.
Keywords
capacitors; energy harvesting; optimisation; MEMS capacitive KEH devices; capacitive energy conversion; capacitive kinetic energy harvesters; conditioning circuits; electrical domain; electrical properties; electromechanical properties; electromechanical system; flyback mechanisms; optimization approach; rectangular charge-voltage cycle; variable capacitor; Capacitance; Capacitors; Charge pumps; Energy conversion; Mobile communication; Transducers; Vibrations; Capacitance; DC-DC power conversion; circuit analysis; energy harvesting; power systems; switched systems;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2015.2451911
Filename
7214328
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