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- W4382053146 abstract "Work-energy principle (WEP) governing the wireless power transfer (WPT) process is derived. Driving power as the source to sustain the steady WPT is obtained. Transferring coefficient (TC) used to quantify the power transfer efficiency is introduced. The WEP gives a clear physical picture to the WPT process. The physical picture reveals the essential difference between the transferring problem and the scattering problem. The essential difference exposes the fact that the conventional characteristic mode theory (CMT) for the scattering systems cannot be directly applied to the transferring systems usually. Under the WEP framework, this paper establishes a CMT for the transferring systems. By diagonalizing the driving power operator (DPO), the CMT can construct a set of energy-decoupled characteristic modes (CMs) for any pre-selected objective transferring system. It is proved that the obtained CM set contains the optimal transferring mode, which can maximize the TC. Employing the WEP-based CMT for the transferring systems, this paper does the modal analysis for some typical two-coils transferring systems, and introduces the concepts of co-resonance and ci-resonance (defined as capacitive-inductive-neutralized resonance), and reveals some important differences and connections “between the transferring problem and the scattering problem”, “between the co-resonance phenomenon of transferring systems and the scattering resonance phenomenon of scattering systems”, and “between the so-called magnetic resonance and the classical electric-magnetic resonance”." @default.
- W4382053146 created "2023-06-27" @default.
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- W4382053146 date "2023-04-21" @default.
- W4382053146 modified "2023-09-23" @default.
- W4382053146 title "Work-Energy Principle (WEP)-Based Characteristic Mode Theory for Wireless Power Transfer Systems" @default.
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- W4382053146 doi "https://doi.org/10.1109/icccs57501.2023.10150660" @default.
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