Abstract
This work presents a numerical analysis of a 2.45 GHz full-wave bridge rectifier for RF (radio frequency) energy harvesting under low-power input conditions, and a guideline for developing a figure of merit (FOM) for RF energy harvester rectennas by relying on data science techniques, laying the foundation for a universally accepted FOM. The performance of the full-wave bridge rectifier, using two types of Schottky diodes, HSMS2850 and SMS7630, was evaluated at −5 and −15 dBm, with the diodes achieving maximum power conversion efficiencies (PCEs) of 57% and 33%, respectively, and reflection coefficient S11 values below −30 dB. A printed circuit board was designed to prepare for future laboratory measurements offering insights into real-world performance. Additionally, a double-voltage rectifier was simulated, achieving PCE values of 41% and 66% at similar input power levels; furthermore, various CMOS-based rectifier topologies reached PCE values of 69% at −5 dBm and 43.6% at −26 dBm.
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CITATION STYLE
Koubar, G., Haddad, F., Gadacha, A., Sadek, S., & Rahajandraibe, W. (2025). A Comprehensive Numerical Analysis of a 2.45 GHz Energy Harvesting Rectenna System and a Proposal for a Figure of Merit for Rectenna Systems †. Electronics (Switzerland), 14(4). https://doi.org/10.3390/electronics14040716
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