Publicação
Rectification, amplification and switching capabilities for energy harvesting systems: power management circuit for piezoelectric energy harvester
| Resumo: | A new energy mechanism needs to be addressed to overcome the battery dependency, and consequently extend Wireless Sensor Nodes (WSN) lifetime effectively. Energy Harvesting is a promising technology that can fulfill that premise. This work consists of the realization of circuit components employable in a management system for a piezoelectric-based energy harvester, with low power consumption and high efficiency. The implementation of energy harvesting systems is necessary to power-up front-end applications without any battery. The input power and voltage levels generated by the piezoelectric transducer are relatively low, especially in small-scale systems, as such extra care has to be taken in power consumption and efficiency of the circuits. The main contribution of this work is a system capable of amplifying, rectifying and switching the unstable signal from an energy harvester source. The circuit components are designed based on 0.13 Complementary Metal-Oxide-Semiconductor (CMOS) technology. An analog switch, capable of driving the harvesting circuit at a frequency between 1 and 1 , with proper temperature behaviour, is designed and verified. An OFF resistance of 520.6 Ω and isolation of −111.24 , grant excellent isolation to the circuit. The designed voltage amplifier is capable of amplifying a minor signal with a gain of 42.56 , while requiring low power consumption. The output signal is satisfactorily amplified with a reduced offset voltage of 8 . A new architecture of a two-stage active rectifier is proposed. The power conversion efficiency is 40.4%, with a voltage efficiency of up to 90%. Low power consumption of 17.7 is achieved by the rectifier, with the embedded comparator consuming 113.9 . The outcomes validate the circuit’s power demands, which can be used for other similar applications in biomedical, industrial, and commercial fields. |
|---|---|
| Autores principais: | Ferreira, Ana Cláudia Rodrigues |
| Assunto: | Analog switch CMOS Energy harvesting Rectifier Voltage amplifier Interruptor analógico Energy harvesting Rectificador Amplificador |
| Ano: | 2020 |
| País: | Portugal |
| Tipo de documento: | dissertação de mestrado |
| Tipo de acesso: | acesso aberto |
| Instituição associada: | Universidade do Minho |
| Idioma: | inglês |
| Origem: | RepositóriUM - Universidade do Minho |
Registos relacionados
groups A voltage limiter circuit for indoor light energy harvesting applications
por: Carvalho, Carlos
Publicado em: (2013)
por: Carvalho, Carlos
Publicado em: (2013)
article A low-power two-stage active rectifier for energy harvesting applications
por: Ferreira, Ana C. R.
Publicado em: (2020)
por: Ferreira, Ana C. R.
Publicado em: (2020)
article 3.6 Organics for piezoelectric energy harvesting
por: Costa, Pedro Filipe Ribeiro
Publicado em: (2023)
por: Costa, Pedro Filipe Ribeiro
Publicado em: (2023)
article A CMOS current starved VCO for energy harvesting applications
por: Almeida, Gonçalo F. F.
Publicado em: (2020)
por: Almeida, Gonçalo F. F.
Publicado em: (2020)
groups Design of an efficient D-TV energy harvesting system for low-power applications
por: Moura, Tiago
Publicado em: (2016)
por: Moura, Tiago
Publicado em: (2016)
school Power management circuit: design and comparison of efficient techniques for ultra-low power analog switch and rectifier circuit
por: Godinho, António Maria Martinho Mendes
Publicado em: (2022)
por: Godinho, António Maria Martinho Mendes
Publicado em: (2022)
article High-efficiency D-TV energy harvesting system for low-input power
por: Moura, Tiago
Publicado em: (2016)
por: Moura, Tiago
Publicado em: (2016)
article Underwater energy harvesting to extend operation time of submersible sensors
por: Faria, C.L.
Publicado em: (2022)
por: Faria, C.L.
Publicado em: (2022)
article Recent progress on piezoelectric, pyroelectric, and magnetoelectric polymer-based energy-harvesting devices
por: Costa, Pedro Filipe Ribeiro
Publicado em: (2019)
por: Costa, Pedro Filipe Ribeiro
Publicado em: (2019)
school Modelling and analysis of piezoelectric energy harvester
por: Nbokassem, Mohammad Waleed
Publicado em: (2020)
por: Nbokassem, Mohammad Waleed
Publicado em: (2020)
article Energy harvesting performance of piezoelectric electrospun polymer fibers and polymer/ceramic composites
por: Pereira, J. Nunes
Publicado em: (2013)
por: Pereira, J. Nunes
Publicado em: (2013)
article Design and evaluation of multi-band RF energy harvesting circuits and antennas for WSNs
por: Borges, Luís M.
Publicado em: (2014)
por: Borges, Luís M.
Publicado em: (2014)
article A CMOS micro power switched-capacitor DC-DC step-up converter for indoor light energy harvesting applications
por: Carvalho, Carlos Manuel Ferreira
Publicado em: (2014)
por: Carvalho, Carlos Manuel Ferreira
Publicado em: (2014)
article Thermoelectric microconverter for energy harvesting systems
por: Carmo, João Paulo Pereira
Publicado em: (2010)
por: Carmo, João Paulo Pereira
Publicado em: (2010)
article Combined organic photovoltaic cells and ultra low power CMOS circuit for indoor light energy harvesting
por: Batista, Duarte
Publicado em: (2019)
por: Batista, Duarte
Publicado em: (2019)
article Printed multifunctional magnetically activated energy harvester with sensing capabilities
por: Brito-Pereira, R.
Publicado em: (2022)
por: Brito-Pereira, R.
Publicado em: (2022)
article Transparent piezoelectric polymer-based materials for energy harvesting and multi-touch detection devices
por: Rodrigues-Marinho, Tiago
Publicado em: (2021)
por: Rodrigues-Marinho, Tiago
Publicado em: (2021)
book CMOS indoor light energy harvesting system for wireless sensing applications
por: Carvalho, Carlos Manuel Ferreira
Publicado em: (2015)
por: Carvalho, Carlos Manuel Ferreira
Publicado em: (2015)
article Investigation of a magnetic levitation architecture with a ferrite core for energy harvesting
por: Soares, Igor Nazareno
Publicado em: (2024)
por: Soares, Igor Nazareno
Publicado em: (2024)
article A DC-DC Step-Up mu-Power Converter for Energy Harvesting Applications, Using Maximum Power PointTracking, Based on Fractional Open Circuit Voltage
por: Carvalho, Carlos
Publicado em: (2012)
por: Carvalho, Carlos
Publicado em: (2012)
article Ocean energy harvesting device for long-term monitoring applications
por: Faria, C.L.
Publicado em: (2022)
por: Faria, C.L.
Publicado em: (2022)
article Piezoelectric and pyroelectric properties of organic MDABCO-NH4Cl3 perovskite for flexible energy harvesting
por: Baptista, Rosa M. F.
Publicado em: (2024)
por: Baptista, Rosa M. F.
Publicado em: (2024)
groups Textile antenna for RF energy harvesting fully embedded in clothing
por: Loss, Caroline
Publicado em: (2016)
por: Loss, Caroline
Publicado em: (2016)
article Poly(vinylidene fluoride) copolymers for hybrid piezoelectric and triboelectric energy harvesting
por: Rodrigues-Marinho, Tiago
Publicado em: (2024)
por: Rodrigues-Marinho, Tiago
Publicado em: (2024)
article Bioinspired cyclic dipeptide functionalized nanofibers for thermal sensing and energy harvesting
por: Santos, Daniela
Publicado em: (2023)
por: Santos, Daniela
Publicado em: (2023)
article Flexible thermoelectric energy harvesting system based on polymer composites
por: Rodrigues-Marinho, T.
Publicado em: (2023)
por: Rodrigues-Marinho, T.
Publicado em: (2023)
article Triboelectric energy harvesting response of different polymer-based materials
por: Rodrigues-Marinho, Tiago
Publicado em: (2020)
por: Rodrigues-Marinho, Tiago
Publicado em: (2020)
article Printable lightweight polymer-based energy harvesting systems: materials, processes, and applications
por: Rodrigues-Marinho, T.
Publicado em: (2023)
por: Rodrigues-Marinho, T.
Publicado em: (2023)
article Fog harvesting meshes physical, economic and environmental characterization
por: Hadba, L.
Publicado em: (2019)
por: Hadba, L.
Publicado em: (2019)
article Development and evaluation of a piezoelectret insole for energy harvesting applications
por: Amorim, Marcio L. M.
Publicado em: (2025)
por: Amorim, Marcio L. M.
Publicado em: (2025)
school Power management circuit for piezoelectric energy harvester
por: Almeida, Gonçalo Fernandes Ferreira de
Publicado em: (2020)
por: Almeida, Gonçalo Fernandes Ferreira de
Publicado em: (2020)
article Energy harvesting device based on a metallic glass/PVDF magnetoelectric laminated composite
por: Lasheras, A.
Publicado em: (2015)
por: Lasheras, A.
Publicado em: (2015)
article Electronic optimization for an energy harvesting system based on magnetoelectric Metglas/poly(vinylidene fluoride)/Metglas composites
por: Reis, S.
Publicado em: (2016)
por: Reis, S.
Publicado em: (2016)
school Printable energy harvester systems for wearable sensors devices
por: Marinho, Tiago André Rodrigues
Publicado em: (2024)
por: Marinho, Tiago André Rodrigues
Publicado em: (2024)
article On the feasibility of GPON fiber light energy harvesting for the internet of things
por: Casaleiro, João
Publicado em: (2018)
por: Casaleiro, João
Publicado em: (2018)
school Avaliação de compósitos magnetoelétricos para aplicações em energy harvesting e atuadores
por: Sousa, Diogo Manuel Freitas de
Publicado em: (2014)
por: Sousa, Diogo Manuel Freitas de
Publicado em: (2014)
article A dynamic threshold cancellation technique for a high-power conversion efficiency CMOS rectifier
por: Godinho, António
Publicado em: (2021)
por: Godinho, António
Publicado em: (2021)
article Energy harvesting technologies for structural health monitoring of airplane components - a review
por: Zelenika, Saša
Publicado em: (2020)
por: Zelenika, Saša
Publicado em: (2020)
school Printable thermal polymer composites for energy harvesting applications
por: Mirra, João Miguel Rodrigues
Publicado em: (2024)
por: Mirra, João Miguel Rodrigues
Publicado em: (2024)
book Piezoelectric energy production
por: Pereira, João Pedro Nunes
Publicado em: (2018)
por: Pereira, João Pedro Nunes
Publicado em: (2018)
Registos relacionados
-
groups A voltage limiter circuit for indoor light energy harvesting applications
por: Carvalho, Carlos
Publicado em: (2013) -
article A low-power two-stage active rectifier for energy harvesting applications
por: Ferreira, Ana C. R.
Publicado em: (2020) -
article 3.6 Organics for piezoelectric energy harvesting
por: Costa, Pedro Filipe Ribeiro
Publicado em: (2023) -
article A CMOS current starved VCO for energy harvesting applications
por: Almeida, Gonçalo F. F.
Publicado em: (2020) -
groups Design of an efficient D-TV energy harvesting system for low-power applications
por: Moura, Tiago
Publicado em: (2016)