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CMOS Indoor Light Energy Harvesting System for Wireless Sensing Applications

This book discusses in detail the CMOS implementation of energy harvesting.  The authors describe an integrated, indoor light energy harvesting system, based on a controller circuit that dynamically and automatically adjusts its operation to meet the actual light circumstances of the environment whe...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Ferreira Carvalho, Carlos Manuel (Autor), Paulino, Nuno Filipe Silva Veríssimo (Autor)
Autor Corporativo: SpringerLink (Online service)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cham : Springer International Publishing : Imprint: Springer, 2016.
Edición:1st ed. 2016.
Temas:
Acceso en línea:Texto Completo

MARC

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100 1 |a Ferreira Carvalho, Carlos Manuel.  |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
245 1 0 |a CMOS Indoor Light Energy Harvesting System for Wireless Sensing Applications  |h [electronic resource] /  |c by Carlos Manuel Ferreira Carvalho, Nuno Filipe Silva Veríssimo Paulino. 
250 |a 1st ed. 2016. 
264 1 |a Cham :  |b Springer International Publishing :  |b Imprint: Springer,  |c 2016. 
300 |a XIV, 216 p. 145 illus., 74 illus. in color.  |b online resource. 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
347 |a text file  |b PDF  |2 rda 
505 0 |a Introduction -- Energy Harvesting Electronic Systems -- Photovoltaic Cell Technologies -- Voltage Step-Up Circuits -- Proposed Energy Harvesting System -- Layout of the System -- Experimental Evaluation of the Prototype -- Conclusions and Future Perspectives. 
520 |a This book discusses in detail the CMOS implementation of energy harvesting.  The authors describe an integrated, indoor light energy harvesting system, based on a controller circuit that dynamically and automatically adjusts its operation to meet the actual light circumstances of the environment where the system is placed.  The system is intended to power a sensor node, enabling an autonomous wireless sensor network (WSN). Although designed to cope with indoor light levels, the system is also able to work with higher levels, making it an all-round light energy harvesting system.  The discussion includes experimental data obtained from an integrated manufactured prototype, which in conjunction with a photovoltaic (PV) cell, serves as a proof of concept of the desired energy harvesting system.  ·         Discusses several energy sources which can be used to power energy harvesting systems and includes an overview of PV cell technologies  ·         Includes an introduction to voltage step-up circuits, with a special emphasis on switched-capacitors (SC) DC-DC voltage converters, energy storing devices and maximum power point tracking (MPPT) techniques  ·         Presents a complete design flow of an indoor light energy harvesting system designed and implemented in a CMOS technology. 
650 0 |a Electronic circuits. 
650 0 |a Energy harvesting. 
650 0 |a Electronics. 
650 1 4 |a Electronic Circuits and Systems. 
650 2 4 |a Energy Harvesting. 
650 2 4 |a Electronics and Microelectronics, Instrumentation. 
700 1 |a Paulino, Nuno Filipe Silva Veríssimo.  |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
710 2 |a SpringerLink (Online service) 
773 0 |t Springer Nature eBook 
776 0 8 |i Printed edition:  |z 9783319216164 
776 0 8 |i Printed edition:  |z 9783319216188 
776 0 8 |i Printed edition:  |z 9783319373607 
856 4 0 |u https://doi.uam.elogim.com/10.1007/978-3-319-21617-1  |z Texto Completo 
912 |a ZDB-2-ENG 
912 |a ZDB-2-SXE 
950 |a Engineering (SpringerNature-11647) 
950 |a Engineering (R0) (SpringerNature-43712)