Synchronization Method for Wireless Power Transfer System by Detecting Voltage Transient on a Sensor Inductor

IF 7.2 1区 工程技术 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Industrial Electronics Pub Date : 2024-11-15 DOI:10.1109/TIE.2024.3488320
Xiaosheng Wang;C. Q. Jiang;Jiayu Zhou;Weisheng Guo;Yuanshuang Fan;Liping Mo
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Abstract

Active rectifier can achieve higher efficiency than an uncontrolled rectifier for the wireless power transfer (WPT) system. However, synchronization is a challenge for both sides' safe and reliable operation of converters. This article proposes a novel synchronization method for the WPT system. Its most significant advantage is that it is not affected by system detuning and can be implemented at any operating frequency. An equivalent sensor inductor (magnetic ring with multiple turns of wire) is connected in series to the resonant tank at the receiving end. The sudden change of the inverter output voltage will cause the voltage transient in the sensor inductor. By detecting and tracking the voltage transient, the frequency and phase synchronization of both sides can be achieved. Experimental results applied to triple-phase shift control also demonstrate that this method can be widely used in multiphase shift control on both sides.
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通过检测传感器电感器上的瞬态电压实现无线电力传输系统同步的方法
在无线电力传输(WPT)系统中,有源整流器比无控整流器具有更高的效率。然而,同步对双方变流器的安全可靠运行都是一个挑战。本文提出了一种新的WPT系统同步方法。它最大的优点是不受系统失谐的影响,可以在任何工作频率下实现。等效传感器电感(带多圈导线的磁环)串联在接收端的谐振槽上。逆变器输出电压的突然变化会引起传感器电感中的电压暂态。通过对电压暂态的检测和跟踪,可以实现两侧的频率和相位同步。应用于三相移控制的实验结果也表明,该方法可广泛应用于两侧的多相移控制。
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来源期刊
IEEE Transactions on Industrial Electronics
IEEE Transactions on Industrial Electronics 工程技术-工程:电子与电气
CiteScore
16.80
自引率
9.10%
发文量
1396
审稿时长
6.3 months
期刊介绍: Journal Name: IEEE Transactions on Industrial Electronics Publication Frequency: Monthly Scope: The scope of IEEE Transactions on Industrial Electronics encompasses the following areas: Applications of electronics, controls, and communications in industrial and manufacturing systems and processes. Power electronics and drive control techniques. System control and signal processing. Fault detection and diagnosis. Power systems. Instrumentation, measurement, and testing. Modeling and simulation. Motion control. Robotics. Sensors and actuators. Implementation of neural networks, fuzzy logic, and artificial intelligence in industrial systems. Factory automation. Communication and computer networks.
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