1. About wireless power transfer1.1 Category of wireless power transfer and coupling type1.2 Overview of electromagnetic induction and magnetic resonant coupling1.3 Overview of electric coupling and electric resonant coupling.1.4 Radiative wireless power transfer2. Basic knowledge of electromagnetism electric circuit2.1 Resistor, Inductor and Capacitor2.2 Fundamentals of electromagnetic induction2.3 High Frequency losses (resistance)2.4 Transient phenomena of non-resonant circuit(Pulse)2.5 Transient phenomena of non-resonant circuit2.6 Effective value, effective power, reactive power and instantaneous power3. Basic phenomena of magnetic resonant coupling3.1 Inductor and resonator3.2 Tolerance to air gap and misalignment3.3 Near-field electromagnetic fields3.4 Determinant of frequency (kHz-MHz-GHz)4. Basic resonant circuit topology (S-S)4.1 Derivation of equivalent circuit4.2 Equivalent circuits in non-resonant frequency5. Comparison of electromagnetic induction and magnetic resonant coupling5.1 Introduction to five types of resonant coupling : N-N, N-S, S-N, S-S, S-P5.2 Equivalent circuit of non-resonant circuit (N-N)5.3 Equivalent circuit of secondary-side resonant circuit (N-S)5.4 Equivalent circuit of primary-side resonant circuit (S-N)5.5 Equivalent circuit of magnetic resonant coupling (S-S)5.6 Equivalent circuit of magnetic resonant coupling (S-P)5.7 Summary of the five circuit types5.8 Comparison and transition of four resonant circuits5.9 Comparison of four resonant circuits under magnetic flux distribution5.10 Role of main magnetic flux6. Other resonant circuit topologies (PS, PP, LCL, LCC)7. Open end and short end type coil7.1 Introduction to open end and short end type coil7.2 Intuitive description of open end type by dipole antennas7.3 Lumped constant circuit and distributed constant circuit7.4 Open-end and short-end type coils from the point of view of distributed constant circuits7.5 Open-end type coils7.6 Short-end type coils7.7 Summary8. System of ma
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