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  1. In the context of energy harvesting for tiny autonomous sensors placed indoors, this work carries out a systematic experimental evaluation of low-power, low-area photovoltaic (PV) cells. The evaluation involves several cell technologies and types of illumination and, for each technology-illumination pair, a sweep of different levels of illuminance and temperature expected indoors is performed.
  2. mdpi-res.com

    In such a context, this work proposes a systematic experimental evaluation of different PV cell technologies while subjected to different types of indoor illumination. 2. Materials and Methods An experimental setup was developed to carry out the systematic evaluation of the PV cells while subjected to indoor illumination.
  3. upcommons.upc.edu

    Projecte SUSTAIN - Smart Building Sensitive to Daily Sentiment ... Systematic experimental evaluation of submilliwatt PV cells for indoor applications. A: Eurosensors Conference. "Eurosensors conference 2023: Lecce, Italy, 10-13 September 2023, volume 97, issue 1". 4052 Basel: Multidisciplinary Digital Publishing Institute (MDPI), 2023, ISBN ...
  4. semanticscholar.org

    DOI: 10.3390/proceedings2024097149 Corpus ID: 268908596; Systematic Experimental Evaluation of Submilliwatt PV Cells for Indoor Applications @article{Ferr2024SystematicEE, title={Systematic Experimental Evaluation of Submilliwatt PV Cells for Indoor Applications}, author={Eduard Ferr{\'e} and Marc Azlor and Manel Gasulla and Ferran Reverter}, journal={Eurosensors 2023}, year={2024}, url={https ...
  5. This work proposes and experimentally characterizes a low-power circuit to track the maximum power point (MPP) of submilliwatt photovoltaic (PV) cells intended for indoor applications. The circuit relies on a low-power conventional indirect tracking technique: the fractional open circuit voltage (FOCV). The experimental results presented herein show that power losses due to the tracking ...
  6. sciencedirect.com

    In this view, researcher's main focus is on solar energy which is the most plentiful energy source which can fulfill energy demands. In this context, Sun is the major source to produce solar energy [159], [84], [164].Literature states that, at an instant 1.8×10 11 MW power solar radiation is received onto the earth, nevertheless the total global energy consumption necessity is far too less ...
  7. ieeexplore.ieee.org

    In the context of powering indoor sensor nodes from the ambient optical energy, an experimental test of low-area photovoltaic (PV) cells under real indoor operating conditions for some weeks is proposed and carried out herein. The study involves PV cells of different technology (i.e., monocrystalline, amorphous, organic, and III-V type) and days with different weather (i.e., sunny, partly ...
  8. sciencedirect.com

    In addition, there is a second problem. In the case of real indoor lighting, the incident radiation is a time-varying mixture of multiple natural and artificial direct, reflective, and scattered sources: it has to be taken into account to have a reliable estimation of the photovoltaic cell performance based on real indoor light illumination (Li et al., 2015, Ma et al., 2017, Minnaert and ...
  9. sciencedirect.com

    The increasing importance of clean energy as a replacement for depleting nonrenewable resources like fossil fuels has resulted in exceptional demands for energy-collecting systems based on renewable energy sources [1, 2].Organic photovoltaic (OPV) cells hold the promise of providing energy to support the Internet of Things (IoT) ecosystem smart instruments including remote sensors, calculators ...

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