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Inherent Interaction Analysis for Harmonic Oscillations in the Multi-Paralleled Grid-Connected Inverter System Using a Sum Type Criterion: Global Admittance (GA)

机译:使用SUM类型标准的多并联网格连接逆变系统谐波振荡的内在交互分析:全球导纳(GA)

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摘要

With the extensive use of power electronics converters, harmonic oscillation issues in the multi-paralleled grid-connected inverter system have drawn much attention. Apart from the stability analysis using the impedance-based stability analysis method, the interaction analysis is aimed at revealing the changing process of the system state under the variation of some parameters such as the grid impendence, the number of grid-connected inverters and the control parameter of the inverter current control, etc. In this paper, after comparing the ratio type stability criterion and the sum type stability criterion, the interaction analysis using global admittance is presented in two frequency-domain dimensions. It shows that the harmonic instability depends on both the imaginary part of global admittance which determines the appearance of the resonance point and the real part of global admittance which reflects the property of such resonance point. The essence of this approach is to reveal the appearance of the resonance point and its influence on the system stability. The inherent changing rules of the resonance point are illustrated in the following typical occasions: different grid impendence, different number of grid-connected inverters and different control parameters of the current control loop. Finally, detailed simulations and experimental results validate the effectiveness of the proposed approach.
机译:随着电力电子转换器的广泛使用,多并联网格连接逆变器系统中的谐振振荡问题具有很大的关注。除了使用基于阻抗的稳定性分析方法的稳定性分析之外,相互作用分析旨在揭示系统状态在一些参数的变化下的变化过程,如网格封闭,网格连接逆变器的数量和控制逆变器电流控制的参数等。本文在比较比率型稳定性标准和总和类型稳定性标准之后,使用全局导入的相互作用分析以两个频域维度呈现。它表明,谐波不稳定性取决于全球导入的虚构部分,它决定了共振点的外观和反映了这种共振点的性质的全局导入的实际部分。这种方法的本质是揭示共振点的外观及其对系统稳定性的影响。谐振点的固有改变规则在以下典型场合中示出:不同的网格封闭,不同数量的网格连接的逆变器和电流控制回路的不同控制参数。最后,详细的模拟和实验结果验证了所提出的方法的有效性。

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