Tuning Techniques for Piezoelectric and Electromagnetic Vibration Energy Harvesters

被引:19
作者
Costanzo, Luigi [1 ]
Vitelli, Massimo [1 ]
机构
[1] Univ Campania Luigi Vanvitelli, Dept Engn, I-81031 Aversa, Caserta, Italy
关键词
vibration energy harvesters; resonance frequency tuning; maximum power extraction; optimization; CIRCUIT PARAMETERS; FREQUENCY; POWER; DESIGN; MAXIMIZATION; PERFORMANCE; MECHANISM; OUTPUT; MPPT;
D O I
10.3390/en13030527
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper is focused on resonant vibration energy harvesters (RVEHs). In applications involving RVEHs the maximization of the extraction of power is of fundamental importance and a very crucial aspect of such a task is represented by the optimization of the mechanical resonance frequency. Mechanical tuning techniques (MTTs) are those techniques allowing the regulation of the value of RVEHs mechanical resonance frequency in order to make it coincident with the vibration frequency. A very great number of MTTs has been proposed in the literature and this paper is aimed at reviewing, classifying and comparing the main of them. In particular, some important classification criteria and indicators are defined and are used to put in evidence the differences existing among the various MTTs and to allow the reader an easy comparison of their performance. Finally, the open issues concerning MTTs for RVEHs are identified and discussed.
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页数:34
相关论文
共 106 条
[1]   Vibration energy harvesting in automotive suspension system: A detailed review [J].
Abdelkareem, Mohamed A. A. ;
Xu, Lin ;
Ali, Mohamed Kamal Ahmed ;
Elagouz, Ahmed ;
Mi, Jia ;
Guo, Sijing ;
Liu, Yilun ;
Zuo, Lei .
APPLIED ENERGY, 2018, 229 :672-699
[2]   Experimental Study on Performance Enhancement of a Piezoelectric Vibration Energy Harvester by applying Self-Resonating Behavior [J].
Aboulfotoh N. ;
Twiefel J. ;
Krack M. ;
Wallaschek J. .
Energy Harvesting and Systems, 2017, 4 (03) :131-136
[3]   A self-tuning resonator for vibration energy harvesting [J].
Aboulfotoh, Noha A. ;
Arafa, Mustafa H. ;
Megahed, Said M. .
SENSORS AND ACTUATORS A-PHYSICAL, 2013, 201 :328-334
[4]   Analysis and Experimental Validation of a Piezoelectric Harvester with Enhanced Frequency Bandwidth [J].
Abramovich, Haim ;
Har-nes, Idan .
MATERIALS, 2018, 11 (07)
[5]   Frequency tuning of piezoelectric energy harvesters by magnetic force [J].
Al-Ashtari, Waleed ;
Hunstig, Matthias ;
Hemsel, Tobias ;
Sextro, Walter .
SMART MATERIALS AND STRUCTURES, 2012, 21 (03)
[6]   Analytical determination of characteristic frequencies and equivalent circuit parameters of a piezoelectric bimorph [J].
Al-Ashtari, Waleed ;
Hunstig, Matthias ;
Hemsel, Tobias ;
Sextro, Andwalter .
JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2012, 23 (01) :15-23
[7]   Vibration energy harvester for variable speed rotor applications using passively self-tuned beams [J].
Alevras, Panagiotis ;
Theodossiades, Stephanos .
JOURNAL OF SOUND AND VIBRATION, 2019, 444 :176-196
[8]   Experimental and theoretical investigation of a nonlinear vibrational energy harvester [J].
Ando, B. ;
Baglio, S. ;
Bulsara, A. R. ;
Marletta, V. ;
Pistorio, A. .
EUROSENSORS 2015, 2015, 120 :1024-1027
[9]  
[Anonymous], P SPIE
[10]  
[Anonymous], MECH BEHAV ACTIVE MA