Effect of the Sampling Parameters in FOCV-MPPT Circuits for Fast-Varying EH Sources
Author:
Affiliation:
1. Department of Electronics Engineering, Universitat Politècnica de Catalunya (UPC), Barcelona, Spain
2. Department of Electrical and Electronic Engineering, Imperial College London, London, U.K.
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering
Link
http://xplorestaging.ieee.org/ielx7/63/9952160/09925619.pdf?arnumber=9925619
Reference19 articles.
1. A 10 mV-Input Boost Converter With Inductor Peak Current Control and Zero Detection for Thermoelectric and Solar Energy Harvesting With 220 mV Cold-Start and $-$14.5 dBm, 915 MHz RF Kick-Start
2. A 100-mV–2.5-V Burst Mode Constant on-Time- Controlled Battery Charger With 92% Peak Efficiency and Integrated FOCV Technique
3. A Nanocurrent Power Management IC for Low-Voltage Energy Harvesting Sources
4. An energy harvesting system for time-varying energy transducers with FOCV based dynamic and adaptive MPPT for 30 nW to 4 mW of input power range
5. A Fully Integrated Maximum Power Tracking Combiner for Energy Harvesting IoT Applications
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1. Power Gain from Energy Harvesting Sources at High MPPT Sampling Rates;Sensors;2023-04-29
2. Experimental Validation of a Fast-Tracking FOCV-MPPT Circuit for a Wave Energy Converter Embedded into an Oceanic Drifter;Journal of Marine Science and Engineering;2023-04-11
3. A Comprehensive Control Strategy for a Push–Pull Microinverter Connected to the Grid;Energies;2023-04-01
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