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An Improved Hybrid Frequency Pacing Modulation for Wireless Power Transfer Systems

机译:用于无线电力传输系统的改进的混合频率起搏调制

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摘要

Zero voltage switching (ZVS) techniques are widely utilized to increase efficiency and reduce electromagnetic interference of wireless power transfer (WPT) systems. Hybrid frequency pacing (HFP) is an excellent modulation method for WPT systems because it can achieve full-load range ZVS without changing the current frequency or adding auxiliary components. Another advantage of HFP is the average switching frequency reduction as decreasing output voltage so that it further reduces switching losses. This article provides an insight into the characteristics of HFP and points out that a large output ripple occurs under some reference conditions. To improve HFP, this article proposes an improved HFP (iHFP) method to minimize output ripple by optimally arranging the hybrid frequencies pulse sequence, but the implementation process of iHFP becomes more complicated. The reason for the unavoidable complicated calculation of HFP is the quantization error. In this viewpoint, this article proposes a modified sigma-delta modulation method with the quantization noise-shaping property for iHFP. As a consequence, the same pulse sequence can be generated by this simple modulator without complex calculations. Experimental results show that iHFP and sigma-Delta iHFP can reduce more than 60% voltage fluctuations compared with HFP. Under 0.2% input reference resolution, 66%-93% computational time reduction is achieved in going from HFP to sigma-Delta iHFP.
机译:零电压切换(ZVS)技术被广泛利用以提高效率并降低无线电力传输(WPT)系统的电磁干扰。混合频率起搏(HFP)是WPT系统的出色调制方法,因为它可以在不改变电流频率或添加辅助部件的情况下实现全负载范围ZV。 HFP的另一个优点是平均切换频率降低,作为降低输出电压,使其进一步降低了切换损耗。本文介绍了对HFP的特征的洞察力,并指出在一些参考条件下发生大输出纹波。为了改善HFP,本文提出了一种改进的HFP(IHFP)方法,通过最佳地布置混合频率脉冲序列来最小化输出纹波,但IHFP的实现过程变得更加复杂。 HFP不可避免复杂计算的原因是量化误差。在此观点介绍,本文提出了一种修改的Sigma-Delta调制方法,具有用于IHFP的量化噪声整形性。结果,可以通过该简单调制器产生相同的脉冲序列而无需复杂的计算。实验结果表明,与HFP相比,IHFP和Sigma-Delta IHFP可以减少超过60%的电压波动。在0.2%的输入参考分辨率下,从HFP到Sigma-Delta IHFP,实现了66%-93%的计算时间减少。

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