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Titlebook: CMOS Indoor Light Energy Harvesting System for Wireless Sensing Applications; Carlos Manuel Ferreira Carvalho,Nuno Filipe Silva Book 2016

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https://doi.org/10.1007/978-3-540-73815-2layout, complemented with experimental results, is presented. To close this chapter, a study about the availability of light energy in an indoor environment is carried out, serving as the basis to size a PV array specifically designed and manufactured to operate in a scenario with such characteristics.
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des an introduction to voltage step-up circuits, with a specThis 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
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Book 2016 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
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n 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.978-3-319-37360-7978-3-319-21617-1
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Michael Steinfeldt,Arnim Gleich,Rüdiger Haumprotecting the energy storage device from overload voltages and, when dealing with a PV-based system, of setting the working output voltage of the PV cell, in order to achieve optimal power operation conditions, by using a MPPT algorithm.
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