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A Study of the SPWM High-Frequency Harmonic Circulating Currents in Modular Inverters

机译:模块化逆变器中SPWM高频谐波循环电流的研究

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摘要

Due to detection and control errors, some high-frequency harmonics with voltage-source characteristics cause circulating currents in modular inverters. Moreover, the circulating currents are usually affected by the output filters (OF) of each module due to their filter and resonance properties. The interaction among the circulating currents in the modules increase the power loss and reduce system stability and control precision. Therefore, this paper reports the results of a study on the SPWM high-frequency harmonics circulating currents for a double-module VSI. In the paper, an analysis of the circulating-current circuits is briefly described. Next, a mathematic model of the single-module output voltage based on the carrier frequency of SPWM is built. On this basis, through mathematic modeling of high-frequency harmonic circulating currents, the formation mechanism and distribution characteristics of circular currents and their influences are studied in detail. Finally, the influences of the OF on the circulating currents are studied by mainly taking an LC-type filter as an example. A theoretical analysis and experimental results demonstrate some important characteristics. First, the carrier phase shifting of the SPWM for each module is the major cause of the SPWM harmonic circulating currents, and the circulating currents are in an odd distribution around n-times the carrier frequency n omega(s), where n = 1, 2, 3,.... Second, the harmonic circular currents do not flow into the parallel system. Third, the OF can effectively suppress the non-circulating part of the high-frequency harmonic currents but is ineffective for the circulation part, and actually reduces system stability.
机译:由于检测和控制错误,一些具有电压源特性的高频谐波会在模块化逆变器中产生循环电流。此外,循环电流由于其滤波器和谐振特性,通常受每个模块的输出滤波器(OF)的影响。模块中循环电流之间的相互作用会增加功率损耗并降低系统稳定性和控制精度。因此,本文报告了双模块VSI的SPWM高频谐波循环电流研究的结果。在本文中,简要介绍了对循环电流电路的分析。接下来,建立基于SPWM载波频率的单模块输出电压的数学模型。在此基础上,通过对高频谐波环流的数学建模,详细研究了环流的形成机理,分布特性及其影响。最后,主要以LC型滤波器为例,研究了OF对循环电流的影响。理论分析和实验结果表明了一些重要特征。首先,每个模块的SPWM的载波相移是SPWM谐波循环电流的主要原因,并且循环电流在n倍于载波频率nΩ的n倍附近呈奇数分布,其中n = 1, 2,3,....其次,谐波圆形电流不会流入并联系统。第三,OF可以有效地抑制高频谐波电流的非循环部分,但对循环部分无效,实际上降低了系统稳定性。

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