并网逆变器配电网谐振频率预测

Arash Moradi, Firuz Zare, J. Yaghoobi
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摘要

谐振频率下电流谐波幅值的增加会导致配电网中由于谐振而产生高电压谐波。由于这些电压谐波可能潜在地破坏电网元件的绝缘,因此需要采取预防措施。为了采取预防措施,调查网络中发生共振的可能性是必要的。为此,网络的谐振频率可以通过使用电路元件(如电缆或变压器)的等效电路来估计。这表明,这些等效电路的精度显著影响估计的谐振频率。因此,本文从谐振频率计算的角度对网格单元的等效电路进行了研究。分析了集肤效应、电缆并联电容、变压器高频模型对估计谐振频率的影响。这些研究表明,集肤效应会非线性地改变不同频率下的参数值,这使得共振频率的估计更加复杂。因此,在最小二乘法的基础上,提出了一种基于最小二乘法的共振频率估计方法。最后,通过不同的案例研究结果对RLS方法进行了验证。
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Predicting Resonance Frequencies in Distribution Networks with Grid-Connected Inverters
Increase in the amplitude of current harmonics at a resonance frequency could lead to high voltage harmonics in the distribution network due to resonance. As these voltage harmonics could potentially damage the insulation of network elements, preventive actions need to be taken. To take preventive actions, investigating the possibility of resonance occurrence in network is necessary. For that purpose, the resonance frequencies of the network can be estimated by employing the equivalent circuits of circuit elements, such as cables or transformers. This indicates that the accuracy of these equivalent circuits significantly affects the estimated resonance frequencies. Consequently, this paper studies the equivalent circuits of grid elements in terms of resonance frequency calculation. Also, the impacts of skin effect and parallel capacitor in cable, and the high frequency model of transformers on the estimated resonance frequencies are analysed. These investigations show that skin effect changes the value of parameters at different frequencies nonlinearly, which further complicates the estimation of resonance frequencies. Therefore, Reduced Least Squares (RLS) method is developed to estimate resonance frequencies based on Least Squares method. Finally, the RLS method is verified by the results of different case studies.
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