Javascript must be enabled to continue!
A Practical Method for Estimating Mutual Inductance in Wireless Power Transmission System
View through CrossRef
This paper proposes a practical method for estimating mutual inductance in wireless power transmission system based on the principle of electromagnetic induction. Conventional estimation methods utilize a voltage, current, and phase of current in transmitter side, while our method requires only an amplitude of the voltage and current in transmitter side. Our method is designed so that the mutual inductance can be estimated under challenging situation which there is a measurement noise. Numerical simulations show that if the system has a small mutual inductance, a relative error and standard derivation of estimated mutual inductance tend to become larger. However, it will be shown that these factors can be improved to make a voltage of voltage source in the system high.
North Atlantic University Union (NAUN)
Title: A Practical Method for Estimating Mutual Inductance in Wireless Power Transmission System
Description:
This paper proposes a practical method for estimating mutual inductance in wireless power transmission system based on the principle of electromagnetic induction.
Conventional estimation methods utilize a voltage, current, and phase of current in transmitter side, while our method requires only an amplitude of the voltage and current in transmitter side.
Our method is designed so that the mutual inductance can be estimated under challenging situation which there is a measurement noise.
Numerical simulations show that if the system has a small mutual inductance, a relative error and standard derivation of estimated mutual inductance tend to become larger.
However, it will be shown that these factors can be improved to make a voltage of voltage source in the system high.
Related Results
A Mutual Inductance Measurement Method for the Wireless Power Transfer System
A Mutual Inductance Measurement Method for the Wireless Power Transfer System
Abstract
The characteristic of the Magnetic Resonance Wireless Power Transfer (MR-WPT) system is related on the coupling coefficients between coils, so it is very im...
Improved Formulae for the Inductance of Straight Wires
Improved Formulae for the Inductance of Straight Wires
The best analytical formulae for the self-inductance of rectangular coils of circular cross section available in the literature were derived from formulae for the partial inductanc...
Wireless Charging Efficiency Optimization Method Based on Adaptive Robust Control
Wireless Charging Efficiency Optimization Method Based on Adaptive Robust Control
This paper designs, analyzes and optimizes the electric vehicle wireless charging system and its control method. Compared with the traditional plug-in conduction charging, wireless...
Impact of on-chip inductance on power supply integrity
Impact of on-chip inductance on power supply integrity
Abstract. Based on product related scenarios, the impact of on-chip inductance on power supply integrity is analyzed. The impact of varying current profiles is shown to be minimal....
A low stray inductance laminated busbar for series-parallel capacitors
A low stray inductance laminated busbar for series-parallel capacitors
Abstract
In the dynamic characteristics test circuit for high-voltage and high-power power electronic devices, the laminated busbar is the main connecting component....
A transformer winding deformation detection method based on the analysis of leakage inductance changes
A transformer winding deformation detection method based on the analysis of leakage inductance changes
Abstract
The detection of transformer winding deformation caused by short-circuit current is of great significance to the realization of condition based maintenance. Considerin...
Transmission strategies for wireless energy harvesting nodes
Transmission strategies for wireless energy harvesting nodes
Over the last few decades, transistor miniaturization has enabled a tremendous increase in the processing capability of commercial electronic devices, which, combined with the redu...
Dynamic Wireless Charging Performance Enhancement for Electric Vehicles: Mutual Inductance, Power Transfer Capability, and Efficiency
Dynamic Wireless Charging Performance Enhancement for Electric Vehicles: Mutual Inductance, Power Transfer Capability, and Efficiency
Electric vehicles are becoming more popular as an alternative to conventional gasoline-powered vehicles. In order to strengthen charging infrastructure, dynamic wireless charging (...

