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A Wireless Power Transfer System for Spinal Cord Stimulation Based on Generalized Parity-Time Symmetry Condition

Rong, Chao; Zhang, Bo*; Wei, Zhihao; Wu, Lihao; Shu, Xujian
Science Citation Index Expanded
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摘要

In recent years, the parity-time (PT) symmetry principle has been introduced into wireless power transfer (WPT) systems, which can improve the stability of WPT within a certain range. In this article, we analyze the generalized PT-symmetry conditions of four basic WPT topologies based on circuit theory (CT) and coupled mode theory (CMT). The results show that the series-parallel (SP) topology meets the PT-symmetry condition based on the CMT, although it does not meet the condition obtained by the CT. The symmetry between the energy of the two-resonance system is established in the SP topology. According to this unique characteristic, a constant-voltage WPT system for spinal cord stimulation is designed, which is independent of the transfer distance and load in a wide range.

关键词

Topology Wireless power transfer Inductance Power generation Mathematical model Coils Transmitters Circuit theory (CT) coupled mode theory (CMT) parity-time (PT) symmetry spinal cord stimulation (SCS) wireless power transfer (WPT)