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Battery-Free Power Supply for Wireless Sensor Combining Photovoltaic Cells and Supercapacitors

Battery-Free Power Supply for Wireless Sensor Combining Photovoltaic Cells and Supercapacitors
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摘要 This article exhibits the sizing, modelling, and characterization of a power supply (output 3.3 V, 200 mA max, 11 days full autonomy) dedicated to powering a wireless sensor node without a battery but usable as simply as with a battery. This system is modular for various light levels (indoor and outdoor). It is easily integrable into a sensor node, using only commercial circuits. The choices of the photovoltaic surface (amorphous silicon, η 5%, 35 cm<sup>2</sup>) and of the supercapacitors value (2x 25F, 2.7 V) are explained for permanent operation, considering the solar potential and the consumption. An original part of the paper is devoted to the issue of the startup, in which we demonstrate that after a particular preload, once installed, the device can start on request at the desired time (within 15 days) using as a trigger any light source, such as the LED of a mobile phone. This article exhibits the sizing, modelling, and characterization of a power supply (output 3.3 V, 200 mA max, 11 days full autonomy) dedicated to powering a wireless sensor node without a battery but usable as simply as with a battery. This system is modular for various light levels (indoor and outdoor). It is easily integrable into a sensor node, using only commercial circuits. The choices of the photovoltaic surface (amorphous silicon, η 5%, 35 cm<sup>2</sup>) and of the supercapacitors value (2x 25F, 2.7 V) are explained for permanent operation, considering the solar potential and the consumption. An original part of the paper is devoted to the issue of the startup, in which we demonstrate that after a particular preload, once installed, the device can start on request at the desired time (within 15 days) using as a trigger any light source, such as the LED of a mobile phone.
作者 Vincent Boitier Bruno Estibals Florian Huet Lionel Seguier Vincent Boitier;Bruno Estibals;Florian Huet;Lionel Seguier(LAAS-CNRS, Université de Toulouse, Toulouse, France;LISPEN, Arts et Metiers Institute of Technology, HESAM Université, Aix-en-Provence, France)
机构地区 LAAS-CNRS LISPEN
出处 《Energy and Power Engineering》 CAS 2023年第3期151-179,共29页 能源与动力工程(英文)
关键词 PHOTOVOLTAIC Energy Harvesting Free Battery System Energy Management SUPERCAPACITOR Photovoltaic Energy Harvesting Free Battery System Energy Management Supercapacitor
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