A Voltage Doubler Boost Converter Circuit for Piezoelectric Energy Harvesting Systems

被引:3
|
作者
Haseeb, Abdul [1 ]
Edla, Mahesh [2 ]
Ucgul, Mustafa [1 ]
Santoso, Fendy [1 ]
Deguchi, Mikio [3 ]
机构
[1] Southern Cross Univ, Fac Sci & Engn, East Lismore, NSW 2480, Australia
[2] MYRA Corp, Dept Res & Dev, Alstonville, NSW 2477, Australia
[3] Niihama Coll, Natl Inst Technol, Dept Elect & Control Engn, Niihama 7908570, Japan
关键词
piezoelectric energy harvesting; voltage doubler; boost converter; self-powered voltage boost converter; ripple reduction; rectifier; INTERFACE CIRCUIT; RECTIFIER; SSHI; DESIGN; OPTIMIZATION; EFFICIENCY; BATTERY;
D O I
10.3390/en16041631
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 describes the detailed modelling of a vibration-based miniature piezoelectric device (PD) and the analysis modes of operation and control of a voltage doubler boost converter (VDBC) circuit to find the PD's optimal operating conditions. The proposed VDBC circuit integrates a conventional voltage doubler (VD) circuit with a step-up DC-DC converter circuit in modes 1-4, while a non-linear synchronisation procedure of a conventional boost converter circuit is employed in modes 5-6. This integration acted as the voltage boost circuit without utilising duty cycles and complex auxiliary switching components. In addition, the circuit does not require external trigger signals to turn on the bidirectional switches. This facilitates the operation of VDBC circuit at very low AC voltage (V-ac >= 0.5 V). Besides this, the electrical characteristics of VDBC circuit's input (i.e., PD) perfectly concurs with the studied testing scenarios using impedance power sources (mechanical shaker). Firstly, the proposed circuit which can rectify the PD's output was tested at both constant input voltage with varying excitation frequency and constant excitation frequency with varying input voltage. Next, a small-scale solar battery was charged to validate the feasibility of the performance of the proposed VDBC circuit. The proposed circuit achieved a maximum output voltage of 11.7 V-dc with an output power of 1.37 mW. In addition, the rectified voltage waveform is stable due to the sminimisation of the ripples. In addition, the performance of VDBC circuit was verified by comparing the achieved results with previously published circuits in the literature. The results show that the proposed VDBC circuit outperformed existing units as described in the literature regarding output voltage and power. The developed rectifier circuit is suitable for various real-life applications such as energy harvesting and battery charging.
引用
收藏
页数:19
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