One-transmitter Multiple-receiver Wireless Power Transfer System Using an Exceptional Point of Degeneracy
Fatemeh Mohseni, Amin Hakimi, Alireza Nikzamir, Hung Cao, Filippo Capolino

TL;DR
This paper introduces a novel wireless power transfer system leveraging exceptional points of degeneracy (EPD) to maintain high efficiency across varying receiver positions and coupling conditions, surpassing traditional PT symmetry-based methods.
Contribution
It extends the concept of strong and weak coupling regimes with EPD to multi-receiver systems without PT symmetry, enabling robust efficiency in diverse operating conditions.
Findings
EPD enables constant power efficiency across receiver positions.
System shows less sensitivity to coupling variations than conventional methods.
Proposed approach works with non-identical receivers and couplings.
Abstract
Robust transfer efficiency against the various operating conditions in a wireless power transfer system remains a fundamentally important challenge. This challenge becomes even more critical when transferring power to groups of inductively coupled receivers. We propose a method for efficient wireless power transfer to multiple receivers exploiting the concept of exceptional points of degeneracy (EPD) in a self-oscillating system. In previous studies based on PT symmetry, a receiver's operation has been divided into two strong and weak coupling regimes, and the power transfer efficiency is constant in the strong coupling regime when varying the coupling factor. Here, the concept of strong and weak coupling and constant power efficiency is extended to a system of multiple receivers that do not follow PT symmetry. The transmitter has saturable nonlinear gain and the EPD is analyzed when…
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Taxonomy
TopicsWireless Power Transfer Systems · Solid-state spectroscopy and crystallography · Acoustic Wave Resonator Technologies
