Javascript must be enabled to continue!
Dynamic impedance compensation for WPT using a compensator in a three-coil wireless power transfer system
View through CrossRef
Purpose
The purpose of this paper is to study the wireless power transfer (WPT) system that always achieves the maximum output power at a fixed angular frequency using the dynamic impedance compensation and also the maximum transfer efficiency.
Design/methodology/approach
An efficient topology of the WPT system is proposed which states that the functions of the relay are transformed into the functions of the compensator in the three-coil WPT system.
Findings
Increasing the ratio of the frequency detuning factor of the compensator relative to the frequency detuning factor of the compensator also causes the curves of the normalized output power and the transfer efficiency to move toward the high frequency direction.
Practical implications
The scheme of the dynamic compensation for the WPT using a compensator is convenient to obtain the dynamic impedance compensation by adding or removing the capacitances or inductances from the compensator.
Originality/value
The functions of the relay are transformed into the functions of the compensator in the three-coil WPT system.
Title: Dynamic impedance compensation for WPT using a compensator in a three-coil wireless power transfer system
Description:
Purpose
The purpose of this paper is to study the wireless power transfer (WPT) system that always achieves the maximum output power at a fixed angular frequency using the dynamic impedance compensation and also the maximum transfer efficiency.
Design/methodology/approach
An efficient topology of the WPT system is proposed which states that the functions of the relay are transformed into the functions of the compensator in the three-coil WPT system.
Findings
Increasing the ratio of the frequency detuning factor of the compensator relative to the frequency detuning factor of the compensator also causes the curves of the normalized output power and the transfer efficiency to move toward the high frequency direction.
Practical implications
The scheme of the dynamic compensation for the WPT using a compensator is convenient to obtain the dynamic impedance compensation by adding or removing the capacitances or inductances from the compensator.
Originality/value
The functions of the relay are transformed into the functions of the compensator in the three-coil WPT system.
Related Results
Wireless power transfer : fueling the dots
Wireless power transfer : fueling the dots
Resonant Inductive Coupling Wireless Power Transfer (RIC-WPT) has been proven to provide very high power transfer efficiencies (above 80%) for moderate distances, and is hence fore...
Wireless Power Charging in Electrical Vehicles
Wireless Power Charging in Electrical Vehicles
Wireless Power Transfer (WPT) technology can transfer electrical energy from a transmitter to a receiver wirelessly. Due to its many advantages, WPT technology is a more adequate a...
A Review on Characteristics of Wireless Power Transfer
A Review on Characteristics of Wireless Power Transfer
In this paper we discuss the various types of WPT scheme implementations. we analysis wireless power transfer, we discuss the advantage and disadvantage of wireless transfer system...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Signal-to-Noise Ratio and Contrast-to-Noise Ratio Comparisons Between a Wireless Volume Radiofrequency Coil and a Commercially Available Wired Radiofrequency Coil
Signal-to-Noise Ratio and Contrast-to-Noise Ratio Comparisons Between a Wireless Volume Radiofrequency Coil and a Commercially Available Wired Radiofrequency Coil
The design of magnetic resonance imaging (MRI) radiofrequency (RF) coils plays a critical role in determining image quality, with signal-to-noise ratio (SNR) and contrast-to-noise ...
Wireless Power Transfer Approaches for Medical Implants: A Review
Wireless Power Transfer Approaches for Medical Implants: A Review
Wireless power transmission (WPT) is a critical technology that provides an alternative for wireless power and communication with implantable medical devices (IMDs). This article p...
Design 3D Printed Coils for WPT
Design 3D Printed Coils for WPT
Abstract
The geometric shapes of coils influence the performance of a 3D IPT system. In this paper, we proposed a 3D coil design method based on (3D) printing electr...
A Multireceiver Wireless Power Supply System with Power Equalization in Stereoscopic Space
A Multireceiver Wireless Power Supply System with Power Equalization in Stereoscopic Space
With the rapid development of wireless power transfer (WPT) technology, the traditional single-transceiver WPT system has become more and more advanced; however, it is still diffic...


