Design and Application of a Self-Powered Dual-Stage Circuit for Piezoelectric Energy Harvesting Systems

被引:9
作者
Edla, Mahesh [1 ]
Lim, Yee Yan [1 ]
Padilla, Ricardo Vasquez [1 ]
Mikio, Deguchi [2 ]
机构
[1] Southern Cross Univ, Sch Environm Sci & Engn, East Lismore, NSW 2480, Australia
[2] Natl Inst Technol, Niihama Coll, Dept Elect & Control Engn, Niihama 7908570, Japan
关键词
Piezoelectric energy harvesting; self-powered H-Bridge circuit; dual-stage H-Bridge circuit; rectifier; solar battery; BRIDGE RECTIFIER; OPTIMIZATION; GENERATORS; EFFICIENCY;
D O I
10.1109/ACCESS.2021.3089697
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper describes the design and practical application of a dual-stage H-Bridge (DSHBR) circuit to reduce the rectification losses and mitigate ripples in piezoelectric energy harvesting. The proposed DSHBR circuit integrates both AC-DC and DC-DC conversion processes using bidirectional switches and a step-up DC-DC converter, which applies to both positive and negative half cycles. One additional feature is that it does not require external power to turn on the bidirectional switches (V-th < 0.3 V). Such feature facilitates active rectification at very low AC voltages (V-ac < 0.5) generated by the piezoelectric device (PD). To validate the performance of the proposed circuit, a series of experimental tests were conducted. Firstly, the performance of circuit on rectifying the PD output was investigated using a shaker to generate high and low frequency excitations. Next, real-life testing was conducted with human arm motion as the source of excitation. Then, the ability of the entire system to charge solar batteries was investigated. The outcome shows that the DSHBR circuit prominently increased the rectified voltage and the output power while stabilising the DC voltage when compared with the conventional H-Bridge circuit.
引用
收藏
页码:86954 / 86965
页数:12
相关论文
共 34 条
[11]   Performance Enhancement of a Multiresonant Piezoelectric Energy Harvester for Low Frequency Vibrations [J].
Izadgoshasb, Iman ;
Lim, Yee Yan ;
Padilla, Ricardo Vasquez ;
Sedighi, Mohammadreza ;
Novak, Jeremy Paul .
ENERGIES, 2019, 12 (14)
[12]   Improving efficiency of piezoelectric based energy harvesting from human motions using double pendulum system [J].
Izadgoshasb, Iman ;
Lim, Yee Yan ;
Tang, Lihua ;
Padilla, Ricardo Vasquez ;
Tang, Zi Sheng ;
Sedighi, Mohammadreza .
ENERGY CONVERSION AND MANAGEMENT, 2019, 184 :559-570
[13]   Optimization of rectifier circuits for a vibration energy harvesting system using a macro-fiber composite piezoelectric element [J].
Kashiwao, Tomoaki ;
Izadgoshasb, Iman ;
Lim, Yee Yan ;
Deguchi, Mikio .
MICROELECTRONICS JOURNAL, 2016, 54 :109-115
[14]   Buck-boost converter for sensorless power optimization of piezoelectric energy harvester [J].
Lefeuvre, Elie ;
Audigier, David ;
Richard, Claude ;
Guyomar, Daniel .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2007, 22 (05) :2018-2025
[15]   Monitoring of concrete curing using the electromechanical impedance technique: review and path forward [J].
Lim, Yee Yan ;
Smith, Scott T. ;
Padilla, Ricardo Vasquez ;
Soh, Chee Kiong .
STRUCTURAL HEALTH MONITORING-AN INTERNATIONAL JOURNAL, 2021, 20 (02) :604-636
[16]   Wave propagation based monitoring of concrete curing using piezoelectric materials: Review and path forward [J].
Lim, Yee Yan ;
Smith, Scott T. ;
Soh, Chee Kiong .
NDT & E INTERNATIONAL, 2018, 99 :50-63
[17]   Active Piezoelectric Energy Harvesting: General Principle and Experimental Demonstration [J].
Liu, Yiming ;
Tian, Geng ;
Wang, Yong ;
Lin, Junhong ;
Zhang, Qiming ;
Hofmann, Heath F. .
JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2009, 20 (05) :575-585
[18]   Diode-less mechanical H-bridge rectifier for "zero threshold" vibration energy harvesters [J].
Majorca, Felice ;
Giusa, Fabio ;
Trigona, Carlo ;
Ando, Bruno ;
Bulsara, Adi R. ;
Baglio, Salvatore .
SENSORS AND ACTUATORS A-PHYSICAL, 2013, 201 :246-253
[19]  
Maxim, 2020, HIGH EFF LOW SUPPL C
[20]  
Nawir N.A.A., 2018, ARPN J