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FDM-based power distribution in parallel line fed wireless power transfer.

, , and . ISCIT, page 89-92. IEEE, (2015)

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A Flexible Design of Secondary-Side Compensation Circuit for Inductive Power Transfer., , and . ISMICT, page 1-4. IEEE, (2020)Efficiency Analysis for Inductive Power Transfer Using Segmented Parallel Line Feeder., , and . IEICE Trans. Electron., 106 (5): 165-173 (May 2023)FDM-based power distribution in parallel line fed wireless power transfer., , and . ISCIT, page 89-92. IEEE, (2015)A proposal of data transmission in parallel line fed wireless power transfer., , , and . ISCIT, page 85-88. IEEE, (2015)A Comparative Study on Radio Coverage Due to DVB-T2 Multi-Frequency Network (MFN) and Single Frequency Network (SFN)., , , and . BMSB, page 1-6. IEEE, (2020)Receiver-side Compensation Circuits Based on T and ∏ equivalent models for Constant Voltage IPT., , and . APWCS, page 1-5. IEEE, (2019)A study on channel prediction for dynamic spectrum control aided spectrum sharing., , and . WPMC, page 30-34. IEEE, (2012)Evaluation of Inductive Power Transfer System for Mobile Using Receiver-Side Compensation Circuit., , and . ISMICT, page 1-4. IEEE, (2020)Constant Voltage Design Using K-Inverter for Cooperative Inductive Power Transfer., , and . IEICE Trans. Electron., 105-C (8): 358-368 (August 2022)DVB-T2 Receiver: Impact of FFT Window Positioning on Radio Coverage., , , and . BMSB, page 1-4. IEEE, (2019)