An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits

In this research work, we investigated a dual switch (DS) active rectifier for the piezoelectric (PE) energy scavenging system. In the proposed DS active rectifier configuration, two extra switches are shunted across the PE transducer which helps the PE transducer’s capacitor in charging a...

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Main Authors: Amad Ud Din, Muhammad Kamran, Waqar Mahmood, Khursheed Aurangzeb, Abdulaziz Saud Altamrah, Jong-Wook Lee
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Electronics
Subjects:
Online Access:http://www.mdpi.com/2079-9292/8/1/66
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spelling doaj-ecfe0611617c449a9e1ae230f5b4438e2020-11-24T22:05:26ZengMDPI AGElectronics2079-92922019-01-01816610.3390/electronics8010066electronics8010066An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting CircuitsAmad Ud Din0Muhammad Kamran1Waqar Mahmood2Khursheed Aurangzeb3Abdulaziz Saud Altamrah4Jong-Wook Lee5Material Synthesis & Characterizations (MSC) Lab-Electronics Division, Department of Physics, Fatima Jinnah Women University (FJWU), The Mall, Rawalpindi 46000, PakistanDepartment of Electrical & computer Engineering, COMSATS University, Wah Cantt 47040, PakistanMaterial Synthesis & Characterizations (MSC) Lab-Electronics Division, Department of Physics, Fatima Jinnah Women University (FJWU), The Mall, Rawalpindi 46000, PakistanComputer Engineering Department, College of Computer and Information Sciences, King Saud University, Riyadh 11543, Saudi ArabiaComputer Engineering Department, College of Computer and Information Sciences, King Saud University, Riyadh 11543, Saudi ArabiaDepartment of Electronics and Radio Engineering, Kyung Hee University, Yongin 17104, KoreaIn this research work, we investigated a dual switch (DS) active rectifier for the piezoelectric (PE) energy scavenging system. In the proposed DS active rectifier configuration, two extra switches are shunted across the PE transducer which helps the PE transducer’s capacitor in charging and discharging which results in maximum power extraction from the PE transducer. Moreover, in the proposed rectifier configuration comparator controlled active diodes are used instead of conventional/passive diodes to minimize the threshold voltage V T H drop. The proposed DS active rectifier design is fabricated in a 1-poly 6-metal 180-nm standard CMOS process. The simulation and measured results of the proposed DS active rectifier design have the better power conversion efficiency (PCE) of 91.5 %, which definitely helps in extracting more power than the conventional full bridge rectifier (FBR).http://www.mdpi.com/2079-9292/8/1/66piezoelectric transduceractive rectifierenergy harvestingfull bridge rectifier
collection DOAJ
language English
format Article
sources DOAJ
author Amad Ud Din
Muhammad Kamran
Waqar Mahmood
Khursheed Aurangzeb
Abdulaziz Saud Altamrah
Jong-Wook Lee
spellingShingle Amad Ud Din
Muhammad Kamran
Waqar Mahmood
Khursheed Aurangzeb
Abdulaziz Saud Altamrah
Jong-Wook Lee
An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits
Electronics
piezoelectric transducer
active rectifier
energy harvesting
full bridge rectifier
author_facet Amad Ud Din
Muhammad Kamran
Waqar Mahmood
Khursheed Aurangzeb
Abdulaziz Saud Altamrah
Jong-Wook Lee
author_sort Amad Ud Din
title An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits
title_short An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits
title_full An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits
title_fullStr An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits
title_full_unstemmed An Efficient CMOS Dual Switch Rectifier for Piezoelectric Energy-Harvesting Circuits
title_sort efficient cmos dual switch rectifier for piezoelectric energy-harvesting circuits
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2019-01-01
description In this research work, we investigated a dual switch (DS) active rectifier for the piezoelectric (PE) energy scavenging system. In the proposed DS active rectifier configuration, two extra switches are shunted across the PE transducer which helps the PE transducer’s capacitor in charging and discharging which results in maximum power extraction from the PE transducer. Moreover, in the proposed rectifier configuration comparator controlled active diodes are used instead of conventional/passive diodes to minimize the threshold voltage V T H drop. The proposed DS active rectifier design is fabricated in a 1-poly 6-metal 180-nm standard CMOS process. The simulation and measured results of the proposed DS active rectifier design have the better power conversion efficiency (PCE) of 91.5 %, which definitely helps in extracting more power than the conventional full bridge rectifier (FBR).
topic piezoelectric transducer
active rectifier
energy harvesting
full bridge rectifier
url http://www.mdpi.com/2079-9292/8/1/66
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