基于SOGI-PLL的无线电力传输系统的相位补偿、ZVS操作

Ping-an Tan, Haibing He, Xieping Gao
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引用次数: 13

摘要

无线电力传输(WPT)技术是目前公认的一种有效的电力传输手段,因为它比传统的有线电力传输系统具有许多优点。在WPT系统的实现过程中,普遍存在采样过程、算法实现过程、信号转导过程等引起的相位延迟,严重降低了系统的性能。此外,实现变换器的软开关是非常必要的,驱动器施加的必要死区时间应与谐振电流相位滞后控制相兼容。本文提出了一种基于二阶广义积分器锁相环(SOGI-PLL)的直接相位控制(DPC)方法,以在WPT中提供精确的相位补偿和稳定的ZVS运行。DPC决定WPT的相位差Δθ,其中包括变换器输出电压和电流之间的相位差θι和采样过程产生的相位延迟θ"ι。SOGI-PLL提供系统相位,用于动态调节变换器的输出电压频率。实验结果令人信服地表明,该方法可以准确地补偿相位延迟,并且可以同时实现ZVS操作。
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Phase compensation, ZVS operation of wireless power transfer system based on SOGI-PLL
Wireless power transfer (WPT) technology is now recognized as an efficient means of transferring power because having numerous advantages over conventional wired power transfer system. The phase delays, for example induced in the sampling process, the algorithm implementation process, the signal transduction process, etc. are widely found during the implementation of WPT system, which significantly degrade the system performance. Moreover, it would be extremely necessary to implement the Soft-Switching of the converter and the necessary dead time imposed by the drivers should be compatible with the resonant current phase lag control. This paper proposes a Direct Phase Control (DPC) approach, based on Second-Order Generalized Integrator Phase-Locked Loop (SOGI-PLL), to provide accurate phase compensation and stable ZVS operation in the WPT. The DPC determines the phase difference Δθ of WPT, which include the phase difference θι between the output voltage and current of the converter and the phase delay θ"ι derived from the sampling process. The SOGI-PLL provides the phase of system for adjusting the output voltage frequency of the converter dynamically. Experimental results convincingly demonstrate that with the proposed method the phase delay can be compensated accurately and the ZVS operation can be achieved simultaneously.
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