三相三电平并网光伏逆变器共模电磁干扰噪声建模与预测

Huan Zhang, Shuo Wang, J. Puukko
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引用次数: 7

摘要

近年来,由于对高效、低成本逆变器的需求,无变压器光伏系统在工业应用中得到了广泛的应用。然而,漏电接地电流和共模电磁干扰(EMI)噪声变得非常重要,因此需要加以解决。为了解决这些问题,一种简单的CM噪声模型被广泛使用。然而,该模型不包括噪声源如何受到调制方案的影响以及传播路径如何影响CM噪声谱的信息。本文拟对该模型进行改进。提出了一种完整的三相三电平逆变器CM噪声建模与预测方法。建模过程从建立逆变器的简单CM噪声模型开始,然后通过两个步骤进行改进。第一步是CM噪声源建模,第二步是噪声传播路径建模。在噪声源建模方面,讨论了两种不同调制方式对CM噪声产生的影响,并给出了仿真结果。在噪声路径建模中,利用散射参数提取寄生参数。然后开发了一个用于预测CM噪声谱的电路模型,并建立了一个逆变器原型,用于实验验证所提出的技术。通过测量值和模拟值的比较,验证了所提出的建模和预测技术的有效性。
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Common mode EMI noise modeling and prediction for a three-phase, three-level, grid tied photovoltaic inverter
Recently, transformerless photovoltaic (PV) systems become popular in industrial applications due to the demands of high efficiency and low cost inverters. However, the leakage ground current and common mode (CM) electromagnetic interference (EMI) noise becomes significant so they need to be addressed. In solving the problems, a simple CM noise model is widely used. However, the model does not include information on how the noise source will be influenced by modulation schemes and how the propagation path will affect the CM noise spectrum. This paper intends to improve the model. A complete CM noise modeling and prediction method is proposed for the three-phase three-level inverter. Modeling process starts from building a simple CM noise model for the inverter and is then improved by two steps. Step one is for CM noise source modeling and the step two is for noise propagation path modeling. For noise source modeling, the influence of two different modulation schemes on the generation of CM noise is discussed and simulation results are illustrated. For the noise path modeling, scattering parameters is used for parasitic parameter extraction. A circuit model for the prediction of the CM noise spectrum is then developed and an inverter prototype is built for the experimental verification of the proposed technique. The proposed modeling and prediction technique is validated by the comparison between the measured and the simulated CM EMI noise spectra.
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