Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A Voltage Doubler Boost Converter Circuit for Piezoelectric Energy Harvesting Systems

View through CrossRef
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 (Vac ≥ 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 Vdc 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.
Title: A Voltage Doubler Boost Converter Circuit for Piezoelectric Energy Harvesting Systems
Description:
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 (Vac ≥ 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 Vdc 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.

Related Results

Design and Simulation Converter with Buck-boost Converter as The Voltage Stabilizer
Design and Simulation Converter with Buck-boost Converter as The Voltage Stabilizer
Buck-boost Converter is the device with the function to convert DC Voltage input to the setpoint DC Voltage output. Buck-boost converter can be used for regulating unstable voltage...
The Effect of Piezoelectric Shape on Energy Harvesting Shoes
The Effect of Piezoelectric Shape on Energy Harvesting Shoes
Piezoelectric elements are commonly installed in shoe sole to make use of the piezoelectric effect due to the vibration generated by the human motion. Piezoelectric shoe is a great...
Desain Closed-Loop Boost Converter Berbasis Voltage Lift Cell Untuk Implementasi Penguat Tegangan
Desain Closed-Loop Boost Converter Berbasis Voltage Lift Cell Untuk Implementasi Penguat Tegangan
In this new era the use of Photovoltaic (PV) is increasingly being used as an energy source. However, this technology has a drawback, namely, the intensity of the sun's light is al...
Research and Implementation of Single Switch Voltage Clamped Hybrid DC-DC Converter
Research and Implementation of Single Switch Voltage Clamped Hybrid DC-DC Converter
Recently, micro-inverter has received great attention due to its excellent performance under local shade condition. However, this kind of inverter needs large DC-DC voltage gain to...
Simulation and Analysis of Dc-Dc Boost Converter Using Pspice SoftwareProgram
Simulation and Analysis of Dc-Dc Boost Converter Using Pspice SoftwareProgram
In many topologies and uses, the DC-DC converter has emerged as a crucial component. Electric cars, marine hoists, photovoltaic (PV) systems, uninterruptible power supply (UPS), an...
The energy harvester investigation in exercising by using the piezoelectric effect
The energy harvester investigation in exercising by using the piezoelectric effect
Abstract Energy is important in everyday human life, for that reason, energy harvesting is one of the most important issues. Many countries have aging societies, exe...
A Self-Powered VDJT AC–DC Conversion Circuit for Piezoelectric Energy Harvesting Systems
A Self-Powered VDJT AC–DC Conversion Circuit for Piezoelectric Energy Harvesting Systems
A comprehensive model for micro-powered piezoelectric generator (PG), analysis of operation, and control of voltage doubler joule thief (VDJT) circuit to find the piezoelectric dev...
Active Piezoelectric Energy Harvesting: General Principle and Experimental Demonstration
Active Piezoelectric Energy Harvesting: General Principle and Experimental Demonstration
In piezoelectric energy harvesting systems, the energy harvesting circuit is the interface between a piezoelectric device and an electrical load. A conventional view of this interf...

Back to Top