This paper proposes a multiple-receiver inductive power transfer platform which is capable of controlling the load voltages to satisfy individually rated values and  stabilizing the load voltages against the load variations. In the proposed charging platform, multiple transmitting resonators are employed to support a voltage-driven source resonator in manipulating the energy flows toward individual receivers. This structure also helps the voltage source induce constant currents into the transmitting resonators, and therefore, is able to deliver load-independent voltages to the loads. As a r

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[1] Quoc-Trinh Vo, "Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems", IEEE Dataport, 2019. [Online]. Available: http://dx.doi.org/10.21227/3y1v-rv49. Accessed: Feb. 11, 2025.
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doi = {10.21227/3y1v-rv49},
url = {http://dx.doi.org/10.21227/3y1v-rv49},
author = {Quoc-Trinh Vo },
publisher = {IEEE Dataport},
title = {Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems},
year = {2019} }
TY - DATA
T1 - Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems
AU - Quoc-Trinh Vo
PY - 2019
PB - IEEE Dataport
UR - 10.21227/3y1v-rv49
ER -
Quoc-Trinh Vo. (2019). Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems. IEEE Dataport. http://dx.doi.org/10.21227/3y1v-rv49
Quoc-Trinh Vo, 2019. Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems. Available at: http://dx.doi.org/10.21227/3y1v-rv49.
Quoc-Trinh Vo. (2019). "Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems." Web.
1. Quoc-Trinh Vo. Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems [Internet]. IEEE Dataport; 2019. Available from : http://dx.doi.org/10.21227/3y1v-rv49
Quoc-Trinh Vo. "Load-Independent Voltage Control for Multiple-Receiver Inductive Power Transfer Systems." doi: 10.21227/3y1v-rv49